Geomagnetosphere and Coupling Phenomena. Volume II: Coupling of the Geomagnetosphere/Ionosphere/Atmosphere System with Processes Underground, in Low Atmosphere, on the Sun, and in Space

$230.00

Lev I. Dorman
Tel Aviv University, Golan Research Institute, Israel Space Agency, Israel; Pushkov’s IZMIRAN, Russia

Series: Physics Research and Technology
BISAC: SCI032000

The present review book of Lev I. Dorman, The Geomagnetosphere and Coupling Phenomena, Volume II: Coupling of the Geomagnetosphere/Ionosphere/Atmosphere System with Processes Underground, in Low Atmosphere, on the Sun, and in Space reflects the development of the geomagnetosphere’s research and applications for the last few decades. The importance and actuality of the geomagnetosphere’s research are based on the following three factors:

1. The geomagnetosphere is the nearest giant natural laboratory, where it is possible via many satellites and ground measurements to investigate in detail many different plasmas and energetic processes in space, caused by the interaction of high kinetic energy, solar wind plasmas and their perturbations (Interplanetary Coronal Mass Ejections – ICMEs, Interplanetary Shock Waves – ISWs, Interplanetary Interaction Regions – IIR), including those frozen within the Interplanetary Magnetic Fields (IMF) with the rotated main geomagnetic field. This interaction leads to a dynamic transformation of magnetic fields in the geomagnetosphere, generation and trapping of high energy particles (which can be called as Magnetospheric Cosmic Rays – MCR), generation of numerous instabilities and electromagnetic radiations. These processes are, in principle, similar to processes in magnetospheres of other planets and their moons, in the atmosphere of the sun and other stars, in interplanetary and in interstellar space, and in many different astrophysical objects. This research is an important basis for fundamental space and astrophysical science.

2. In modern times, technology, economics, navigation, TV, internet, radio connections, military aspects, and the life of people on our planet are strongly connected with the work of many satellites moving inside the geomagnetosphere. Different processes and MCR in the geomagnetosphere influence the satellites’ work and often lead to satellite malfunctions up to fully destroying them; the satellites essentially “die”. The described research can be considered as a basis for developing methods of forecasting dangerous situations for satellites in different orbits as well as to decrease the risk of satellite malfunctions and loss. For this purpose, this research has important practical applications.

3. The interaction of ICME, ISW, and IIR with the geomagnetosphere leads to the generation of big magnetic storms accompanied with the Forbush decrease and precursory effects in Galactic Cosmic Ray (GCR) intensity. These magnetic storms are dangerous not only to satellites, but also to the Earth’s surface for technology, radio connections, car accidents, and human health (e.g., increasing the frequency of infarct myocardial and brain strokes). Investigations of magnetic storm causes can help to develop methods of their forecasting and decreasing the level of magnetic storms hazards. Therefore, the other practical application of this research is connected with the problem of space weather and space climate influence on technology, radio connections, navigation, transportation, and human health on Earth independent of altitude and geomagnetic latitude.

We hope that this review book will be interesting and useful for researches, engineers, students, and all people interested in the developing of modern technologies in space and concerning issues with the geomagnetosphere, ionosphere, upper and low Atmosphere, cosmic rays, space weather and space climate influence on Earth. (Imprint: Nova)

Table of Contents

Table of Contents

Preface to Volume II

Abbreviations and Notations

Chapter 1. Solar Activity and Solar Wind/IMF Coupling with the Geomagnetosphere-Ionosphere System

Chapter 2. Coupling Geomagnetosphere/Ionosphere System with the Thermosphere, Plasmasphere, and Geocorona

Chapter 3. Solar Activity and Solar Wind/IMF Coupling with the Geomagnetosphere-Ionosphere-Thermosphere-Mesosphere-Stratosphere-Troposphere System

Chapter 4. The Influence of Geomagnetic Storms and Polar Substorms on the Ionosphere, Thermosphere, Mesosphere, Stratosphere, and Troposphere

Chapter 5. The Influence of ICME, SIR, HSS, Solar Flares and Solar Eclipses on the Magnetosphere-Ionosphere-Atmosphere System

Chapter 6. The Influence of Underground, Ground, and Low Atmosphere Processes on the Geomagnetosphere-Ionosphere-Atmosphere System

References

Author Contact Information

Author Index

Object Index


References

Preface

Alexeev I.I. and V.V. Kalegaev, 2007. “Magnetosphere of the Earth”, in Model of Cosmos, Vol. 1 (Ed. M.I. Panasyuk), Moscow, 417-455. In Russian.
Alexeev I.I. and V.V. Kalegaev, 2008. “Magnetic field and main current systems in magnetosphere”, in Plasmas Heliogeophysics, Vol. 1 (Eds. L.M. Zeleny and I.S. Veselovsky). Physmatlit, Moscow, 422-434 (in Russian).
Amit H., R. Leonhardt, and J. Wicht, 2010. “Polarity Reversals from Paleomagnetic Observations and Numerical Dynamo Simulations”, Space Sci. Rev., 155, 293–335. DOI 10.1007/s11214-010-9695-2.
Aubert J., J.A. Tarduno, and C.L. Johnson, 2010. “Observations and Models of the Long-Term Evolution of Earth’s Magnetic Field”, Space Sci. Rev., 155, 337–370. DOI 10.1007/s11214-010-9684-5.
Deminov M.G., 2008. “Ionosphere of the Earth”, in Plasmas Heliogeophysics, Vol. 2 (Eds. L.M. Zeleny and I.S. Veselovsky). Physmatlit, Moscow, 92-163 (in Russian).
Donadini F., M. Korte, and C. Constable, 2010. “Millennial Variations of the Geomagnetic Field: from Data Recovery to Field Reconstruction”, Space Sci. Rev., 155, 219–246. DOI 10.1007/s11214-010-9662-y.
Dorman L.I., 1969. “Geophysical effects and properties of the various components of the cosmic radiation in the atmosphere (Rapporteur Talk)”. Proc. of 11-th Intern. Cosmic Ray Conf., Budapest, Volume of Invited Papers and Rapporteur Talks, pp. 381-444.
Dorman L.I., 1987. “Geomagnetic and atmospheric effects in primary and secondary cosmic rays; cosmogeneous nuclei (rapporteur paper)”. Proc. 20-th Intern. Cosmic Ray Conf., Moscow, Vol. 8, pp 186-237.
Eastwood J.P., H. Hietala, G. Toth, T. D. Phan, and M. Fujimoto, 2015. “What Controls the Structure and Dynamics of Earth’s Magnetosphere?”, Space Sci. Rev., 188, No. 1-4, 251-286.
Finlay C.C., M. Dumberry, A. Chulliat, and M.A. Pais, 2010. “Short Timescale Core Dynamics: Theory and Observations”, Space Sci. Rev., 155, 177–218. DOI 10.1007/s11214-010-9691-6.
Gillet N., V. Lesur, N. Olsen, 2010. “Geomagnetic Core Field Secular”, Space Sci. Rev., 155, 129–145. DOI 10.1007/s11214-009-9586-6.
Goldstein J. and D.J. McComas, 2013. “Five Years of Stereo Magnetospheric Imaging by TWINS”, Space Sci. Rev., 180, 39–70.
Gubbins D., 2010. “Terrestrial Magnetism: Historical Perspectives and Future Prospects “Baggage We Carry with Us”, Space Sci. Rev., 155, 9–27.
Hulot G., A. Balogh, U.R. Christensen, C.G. Constable, M. Mandea, and N. Olsen, 2010a. “The Earth’s Magnetic Field in the Space Age: An Introduction to Terrestrial Magnetism”, Space Sci. Rev., 155, 1–7.
Hulot G., C.C. Finlay, C.G. Constable, N. Olsen, M. Mandea, 2010b. “The Magnetic Field of Planet Earth”, Space Sci Rev, 152, 159–222.
Johnson J.R., S. Wing, and P.A. Delamere, 2014. “Kelvin Helmholtz Instability in Planetary Magnetospheres”, Space Sci. Rev., 184, No. 1-4, 1-31.
Kotova G.A., A.S. Leonovich, B.A. Mazur, A.S. Kovtyukh, M.I. Panasyuk, V.Yu. Trakhtengerts, and A.G. Demekhov, 2008. “Inner magnetosphere”, in Plasmas Heliogeophysics, Vol. 1 (Eds. L.M. Zeleny and I.S. Veselovsky), Physmatlit, Moscow, 484-569 (in Russian).
Kovtyukh A.S., 2007a. “Outer plasmas magnetosphere’s covers”, in Model of Cosmos, Vol. 1 (Ed. M.I. Panasyuk), Moscow, 456-481. In Russian.
Kovtyukh A.S., 2007b. “Ring current”, in Model of Cosmos, Vol. 1 (Ed. M.I. Panasyuk), Moscow, 482-517. In Russian.
Kozelov B.V., V.A. Pilipenko, and V.Yu. Trakhtengerts, 2008. “Ionosphere-magnetosphere action and physics of auroras phenomena”, in Plasmas Heliogeophysics, Vol. 1 (Eds. L.M. Zeleny and I.S. Veselovsky), Physmatlit, Moscow, 569-586 (in Russian).
Kuznetsov S.N. and L.V. Tverskaya, 2007a. “Radiation belts”, in Model of Cosmos, Vol. 1 (Ed. M.I. Panasyuk), Moscow, 518-546. In Russian.
Kuznetsov S.N. and L.V. Tverskaya, 2007b. “Cosmic rays penetrating into magnetosphere”, in Model of Cosmos, Vol. 1 (Ed. M.I. Panasyuk), Moscow, 579-591. In Russian.
Lazutin L.L., 2007. “Auroral magnetosphere”, in Model of Cosmos, Vol. 1 (Ed. M.I. Panasyuk), Moscow, 547-578. In Russian.
Li X. and M.A. Temerin, 2001. “The electron radiation belt”, Space Sci. Rev., 95, No. 1-2, 569-580.
Malova H.V. and L.M. Zeleny, 2008. “Structure and dynamics of magnetosphere’s tail”, in Plasmas Heliogeophysics, Vol. 1 (Eds. L.M. Zeleny and I.S. Veselovsky). Physmatlit, Moscow, 434-483 (in Russian).
Mandea M., R. Holme, A. Pais, K. Pinheiro, A. Jackson, and G. Verbanac, 2010. “Geomagnetic Jerks: Rapid Core Field Variations and Core Dynamics”, Space Sci. Rev., 155, 147–175 DOI 10.1007/s11214-010-9663-x.
Matzka J., A. Chulliat, M. Mandea, C.C. Finlay, and E. Qamili, 2010. “Geomagnetic Observations for Main Field Studies: From Ground to Space”, Space Sci. Rev., 155, 29–64. DOI 10.1007/s11214-010-9693-4.
Olsen N., K.-H. Glassmeier, and X. Jia, 2009. “Separation of the Magnetic Field into External and Internal Parts”, Space Sci. Rev., 152, No. 1-4, 135-157.
Olsen N., G. Hulot, and T.J. Sabaka, 2010. “Measuring the Earth’s Magnetic Field from Space: Concepts of Past, Present and Future Missions”, Space Sci. Rev., 155, No. 1.65-93. DOI 10.1007/s11214-010-9676-5.
Petrukovich A.A. (Ed.), 2008. “Solar-terrestrial relations and space weather” in Plasmas Heliogeophysics, Vol. 2 (Eds. L.M. Zeleny and I.S. Veselovsky). Physmatlit, Moscow, 175-257 (in Russian).
Shabansky V.P., 1968. “Magnetospheric processes and related geophysical phenomena”, Space Sci. Rev., 8, No. 3, 366-454.
Sokoloff D.D., R.A. Stepanov, and P.G. Frick, 2014. “Dynamos: from an astrophysical model to laboratory experiments”, Physics-Uspekhi, 57, No. 3, 292-311. Russian Text: Uspekhi Fizicheskikh Nauk, 184, No. 3, 313-335.
Thébault E., M. Purucker, K.A. Whaler, B. Langlais, and T.J. Sabaka, 2010. “The Magnetic Field of the Earth’s Lithosphere”, Space Sci Rev, 155, 95–127.
Vaisberg O.L., V.N. Smirnov, G.N. Zastenker, S.P. Savin, and M.I. Verigin, 2008. “Interaction of solar wind with outer magnetosphere of the Earth”, in Plasmas Heliogeophysics, Vol. 1 (Eds. L.M. Zeleny and I.S. Veselovsky). Physmatlit, Moscow, 378-422 (in Russian).
Valdivia J.A., J. Rogan, V. Muñoz, B. A. Toledo, and M. Stepanova, 2013. “The magnetosphere as a complex system”, Adv. in Space Research, 51, No. 10, 1934-1941.
Vasyliūnas V.M., 2011. “Physics of Magnetospheric Variability”, Space Sci. Rev, 158, No. 1, 91-118.

Chapter 1

Aggarwal M., A. Bardhan, and D.K. Sharma, 2017. “Equinoctial asymmetry in ionosphere over Indian region during 2006–2013 using COSMIC measurements”, Advances in Space Research,

60, 999–1014.
Aikio A. T., L. Cai, and T. Nygren, 2012. “Statistical distribution of height-integrated energy exchange rates in the ionosphere”, J. Geophys. Res., 117, A10325, doi:10.1029/2012JA018078.
Ajith K.K., S. Tulasi Ram, M. Yamamoto, Y. Otsuka, and K. Niranjan, 2016. “On the fresh development of equatorial plasma bubbles around the midnight hours of June solstice”, J. Geophys. Res. Space Physics, 121, 9051–9062, doi:10.1002/ 2016JA023024.
Akala A.O., E.O. Somoye, A.O. Adewale, E.W. Ojutalayo, S.P. Karia, R.O. Idolor, D. Okoh, and P.H. Doherty, 2015. “Comparison of GPS-TEC observations over Addis Ababa with IRI-2012 model predictions during 2010–2013”, Adv. Space Res., 56, No. 8, 1686–1698.
Alken P., 2016. “Observations and modeling of the ionospheric gravity and diamagnetic current systems from CHAMP and Swarm measurements”, J. Geophys. Res. Space Physics, 121, No. 1, doi:10.1002/2015JA022163, 589–601.
Araki T., 1994. “A physical model of geomagnetic sudden commencement”, in Solar Wind Sources of Magnetospheric Ultra-Low-Frequency Waves, Geophys. Monogr. Ser., 81, edited by M.J. Engebretson, K. Takahashi, and M. Scholer, AGU, Washington, D.C., 183-200.
Aubry M.P., C.T. Russell, and M.G. Kivelson, 1970. “Inward motion of the magnetopause before a substorm”, J. Geophys. Res., 75, No. 34, 7018-7031.
Badman S.V., E.J. Bunce, J.T. Clarke, S.W.H. Cowley, J.-C. Gérard, D. Grodent, and S.E. Milan, 2005. “Open flux estimates in Saturn’s magnetosphere during the January 2004 Cassini-HST campaign, and implications for reconnection rates”, J. Geophys. Res., 110, No. A11, A11216, doi:10.1029/2005JA011240, 1-16 (2005).
Baker D.N., A.J. Klimas, D. Vassiliadis, T.I. Pulkkinen, and R.L. McPherron, 1997a. “Reexamination of driven and unloading aspects of magnetospheric substorms”, J. Geophys. Res., 102, No. A4, 7169-7177.
Bargatze L.F., D.N. Baker, R.L. McPherron, and E.W. Hones, 1985. “Magnetospheric impulse response for many levels of geomagnetic activity”, J. Geophys. Res., 90, No. A7, 6387-6394.
Barkhatova O.M., N.V. Kosolapova, and I.A. Bazina, 2015. “Spatiotemporal Dynamics of Submeridional and Sublatitudinal Ionospheric Perturbations under Different Solar-Geophysical Conditions”, Geomagnetism and Aeronomy, 55, No. 2, 199-209. Russian Text: Geomagnetizm i Aeronomiya, 55, No. 2, 211-221.
Belenkaya E.S., V.V. Kalegaev, and M.S. Blokhina, 2014. “Polar cap response to the solar wind density jump under constant southward IMF”, Geomagnetism and Aeronomy, 54, No. 6, 702-711.
Blanc M., and A.D. Richmond, 1980. “The ionospheric disturbance dynamo”, J. Geophys. Res., 85, No. A4, 1669–1686.
Bristow W.A., E. Amata, J. Spaleta, and M.F. Marcucci, 2015. “Observations of the relationship between ionospheric central polar cap and dayside throat convection velocities, and solar wind/IMF driving”, J. Geophys. Res. Space Physics, 120, No. 6, doi:10.1002/2015JA021199, 4684–4699.
Burns A.G., S.C. Solomon, W. Wang, L. Qian, Y. Zhang, L.J. Paxton, X. Yue, J.P. Thayer, and H.L. Liu, 2015. “Explaining solar cycle effects on composition as it relates to the winter anomaly”, J. Geophys. Res. Space Physics, 120, No. 7, doi:10.1002/2015JA021220, 5890–5898.
Cai L., A.T. Aikio, and T. Nygrén, 2014. “Solar wind effect on Joule heating in the high-latitude ionosphere”, J. Geophys. Res. Space Physics, 119, No. 12, doi:10.1002/2014JA020269, 10440-10455.
Cander L.R., 2015. “Forecasting foF2 and MUF(3000)F2 ionospheric characteristics – A challenging space weather frontier”, Adv. Space Res., 56, No. 9, 1973–1981.
Chen Y.-J., R.A. Heelis, and J.A. Cumnock, 2015. “Response of the ionospheric convection reversal boundary at high latitudes to changes in the interplanetary magnetic field”, J. Geophys. Res. Space Physics, 120, No. 6, doi:10.1002/2015JA021024, 5022–5034.
Chen Y., L. Liu, H. Le, W. Wan, and H. Zhang, 2016. “The global distribution of the dusk-to-nighttime enhancement of summer NmF2 at solar minimum”, J. Geophys. Res. Space Physics, 121, 7914–7922, doi:10.1002/2016JA022670.
Cherniak I. and I. Zakharenkova, 2016. “First observations of super plasma bubbles in Europe”, Geophys. Res. Lett., 43, 11,137–11,145, doi:10.1002/2016GL071421.
Cnossen I. and M. Förster, 2016. “North-south asymmetries in the polar thermosphere-ionosphere system: Solar cycle and seasonal influences”, J. Geophys. Res. Space Physics, 121, No. 1, doi:10.1002/2015JA021750, 612–627.
Cowley S.W.H., 1991. “The structure and length of tail-associated phenomena in the solar wind downstream from the Earth”, Planet. Space Sci., 39, No. 7, 1039-1043.
Cowley S.W.H. and M. Lockwood, 1992. “Excitation and decay of solar wind-driven flows in the magnetosphere-ionosphere system”, Ann. Geophys., Atmos. Hydrospheres Space Sci. (France), 10, No. 1-2, 103-115.
Dandenault P.B. and P.G. Richards, 2015. “The collapse of the midnight ionosphere and behavior of meridional neutral winds at Townsville over a full solar cycle”, J. Geophys. Res. Space Physics, 120, No. 11, doi:10.1002/2015JA021842, 9826–9838.
Danilov A.D. and A.V. Konstantinova, 2015a. “Variations in foF2 trends with season and local time”, Geomagnetizm i Aeronomiya, 55, No. 1, 51–58.
Danilov A.D. and A.V. Konstantinova, 2015b. “Comparison of trends in parameters of the F2 Layer obtained by various authors”, Geomagnetizm i Aeronomiya, 55, No. 4, 457–466.
Danilov A.D. and A.V. Konstantinova, 2016. “Trends in the Critical Frequency foF2 after 2009”, Geomagnetism and Aeronomy, 56, No. 3, 302–310. Original Russian Text published in Geomagnetizm i Aeronomiya, 56, No. 3, 324–332.
Da Silva L.A., P. Satyamurty, L.R. Alves et al., 2016. “Comparison of geophysical patterns in the southern hemisphere mid-latitude region”, Advances in Space Research, 58, 2090–2103.
David M., J.J. Sojka, and R.W. Schunk, 2016. “How uncertainty in the neutral wind limits the accuracy of ionospheric modeling and forecasting”, J. Geophys. Res. Space Physics, 121, No. 1, doi:10.1002/2015JA021544, 519–528.
Deminov M.G. and G.F. Deminova, 2015. “What Solar and Geomagnetic Activities Does F2-Layer Critical Frequency Median Correspond to in Midlatitudes?”, Geomagnetism and Aeronomy, 55, No. 3, 326-332. Russian Text: Geomagnetizm i Aeronomiya, 55, No. 3, 343-349.
Den M., T. Tanaka, S. Fujita, T. Obara, H. Shimazu, H. Amo, Y. Hayashi, E. Nakano, Y. Seo, K. Suehiro, H. Takahara, and T. Takei, 2006. “Real-time Earth magnetosphere simulator with threedimensional magnetohydorodynamic code”, Space Weather, 4, No. 6, S06004, 10.1029/2004SW000100, 105-114.
Denardini C.M., J. Moro, L.C.A. Resende, S.S. Chen, N.J. Schuch, and J.E.R. Costa, 2015. “E region electric field dependence of the solar activity”, J. Geophys. Res. Space Physics, 120, No. 10, doi:10.1002/2015JA021714, 8934–8941.
Dungey J.W., 1961. “Interplanetary magnetic field and the auroral zones”, Phys. Rev. Lett., 6, No. 2, 47-48.
Dungey J.W., 1963. “The structure of the exosphere, or, adventures in velocity” in Geophysics, The Earth’s Environment, Proceedings of the 1962 Les Houches Summer School, edited by C. DeWitt, J. Hiebolt, and A. Lebeau, Gordon and Breach, New York, 505-549.
Dungey J.W., 1965. “The length of the magnetospheric tail”, J. Geophys. Res., 70, No. 7, 1753-1753.
Earle G.D. and M.C. Kelley, 1987. “Spectral studies of the sources of ionospheric electric fields”, J. Geophys. Res., 92, No. A1, 213-224.
Efendi E. and F. Arikan, 2017. “A fast algorithm for automatic detection of ionospheric disturbances: DROT”, Advances in Space Research,

59, 2923–2933.
Elhawary R. and J.M. Forbes, 2016. “Planetary wave variability of Sq currents”, J. Geophys. Res. Space Physics, 121, 11,316–11,332, doi:10.1002/2016JA023242.
Fairfield D.H., 1967a “Polar magnetic disturbances and the interplanetary magnetic field”, Report NASA-TM-X-55836; X-612-67-338, NASA, Goddard Space Flight Center, 1-29.
Fairfield D.H., 1967b. “Polar magnetic disturbances and the interplanetary magnetic field”, Space Res., V, 107-119.
Fairfield D.H. and L.G. Cahill Jr., 1966. “Transition region magnetic field and polar magnetic disturbances”, J. Geophys. Res., 71, No. 1, 155-169.
Fejer B.G., and L. Scherliess, 1997. “Empirical models of storm-time equatorial zonal electric fields”, J. Geophys. Res., 102, No. A11, 24047-24056.
Fejer B.G., R.W. Spiro, R.A. Wolf, and J.C. Foster, 1990. “Latitudinal variation of perturbation electric fields during magnetically disturbed periods: 1986 SUNDIAL observations and model results”, Ann. Geophys., 8, No. 6, 441-454.
Förster M. and S. Haaland, 2015. “Interhemispheric differences in ionospheric convection: Cluster EDI observations revisited”, J. Geophys. Res. Space Physics, 120, No. 7, doi:10.1002/2014JA020774, 5805–5823.
Freeman M.P., C.J. Farrugia, S.W. H. Cowley, D.J. Southwood, M. Lockwood, and A. Etemadi, 1990. “The response of the magnetosphere- ionosphere system to solar wind dynamic pressure variations”, in Physics of Magnetic Flux Ropes, Geophys. Monogr. Ser., 58, edited by C.T. Russell, E.R. Priest and L.C. Lee, AGU, Washington, D.C., 611-618.
Fujita S., T. Tanaka, T. Kikuchi, K. Fujimoto, K. Hosokawa, and M. Itonaga, 2003a. “A numerical simulation of the geomagnetic sudden commencement: 1. Generation of the field-aligned current associated with the preliminary impulse”, J. Geophys. Res., 108, No. A12, 1416, doi:10.1029/2002JA009407, SMP2-1-14.
Fujita S., T. Tanaka, T. Kikuchi, K. Fujimoto, and M. Itonaga, 2003b. “A numerical simulation of the geomagnetic sudden commencement: 2. Plasma processes in the main impulse”, J. Geophys. Res., 108, No. A12, 1417, doi:10.1029/2002JA009763, SMP3-1-16.
Fujita, S., T. Tanaka, and T. Motoba, 2005. “A numerical simulation of the geomagnetic sudden commencement: 3. A sudden commencement in the magnetosphere-ionosphere compound system”, J. Geophys. Res., 110, No. A11, A11203, doi:10.1029/2005JA 011055, 1-8.
Gong W. and H. Qi, 2016. “Study on the scale distribution of the field-aligned irregularities in E-region”, Advances in Space Research, 58, 2469–2475.
Gonzales C.A., M.C. Kelley, B.G. Fejer, J.F. Vickrey, and R.F. Woodman, 1979. “Equatorial electric fields during magnetically disturbed conditions. 2: Implications of simultaneous auroral and equatorial measurements”, J. Geophys. Res., 84, No. A10, 5803-5812.
Gopinath S. and P.R. Prince, 2017. “Multifractal characteristics of magnetospheric dynamics and their relationship with sunspot cycle”, Advances in Space Research,

59, 2265–2278.


Haralambous H. and C. Oikonomou, 2015. “Comparison of peak characteristics of the F2 ionospheric layer obtained from the Cyprus Digisonde and IRI-2012 model during low and high solar activity period”, Adv. Space Res., 56, No. 9, 1927–1938.
Hendrickx K., L. Megner, J. Gumbel, D.E. Siskind, Y. J. Orsolini, H. Nesse Tyssoy, and M. Hervig, 2015. “Observation of 27 day solar cycles in the production andmesospheric descent of EPP-produced NO”, J. Geophys. Res. Space Physics, 120, No. 10, doi:10.1002/2015JA021441, 8978–8988.
Holzer R.E. and J.A. Slavin, 1979. “A correlative study of magnetic flux transfer in the magnetosphere”, J. Geophys. Res., 84, No. A6, 2573-2578.
Holzer R.E., R.L. McPherron, and D.A. Hardy, 1986. “A quantitative empirical model of the magnetospheric flux transfer process”, J. Geophys. Res., 91, No. A3, 3287-3293.
Huang C.-S. and P.A. Roddy, 2016. “Effects of solar and geomagnetic activities on the zonal drift of equatorial plasma bubbles”, J. Geophys. Res. Space Physics, 121, No. 1, doi:10.1002/2015JA021900, 628–637.
Huang C.-S., J.C. Foster, and M.C. Kelley, 2005. “Long-duration penetration of the interplanetary electric field to the low-latitude ionosphere during the main phase of magnetic storms”, J. Geophys. Res., 110, No. A11, A11309, doi:10.1029/2005JA011202, 1-13.
Huang F., X. Dou, J. Lei, J. Lin, F. Ding, and J. Zhong, 2016. “Statistical analysis of nighttime medium-scale traveling ionospheric disturbances using airglow images and GPS observations over central China”, J. Geophys. Res. Space Physics, 121, 8887–8899, doi:10.1002/2016JA022760.
Iijima T. and Potemra T.A., 1978. “Large-scale characteristics of field-aligned currents associated with substorms”, J. Geophys. Res., 83, No. 2, 599–615.
Juusola L., K. Kauristie, M. van de Kamp, E.I. Tanskanen, K. Mursula, T. Asikainen, K. K. Andréeová, N. Partamies, H. Vanhamäki, A. Viljanen, 2015. “Solar wind control of ionospheric equivalent currents and their time derivatives”, J. Geophys. Res. Space Physics, 120, No. 6, doi:10.1002/2015JA021204, 4971–4992.
Kamide Y., A.D. Richmond, B.A. Emery, C.F. Hutchins, B.-H. Ahn, O. de la Beaujardiere, J.C. Foster, R.A. Heelis, H.W. Kroehl, F.J. Rich, and J.A. Slavin, 1994. “Ground-based studies of ionospheric convection associated with substorm expansion”, J. Geophys. Res., 99, No. A10, 19451-19466.
Kamide Y., W. Sun, and S.-I. Akasofu, 1996. “The average ionospheric electrodynamics for the different substorm phases”, J. Geophys. Res., 101, No. A1, 99-109.
Kassa T., S. Tilahun, B. Damtie, 2017. “Solar activity indices as a proxy for the variation of ionospheric Total Electron Content (TEC) over Bahir Dar, Ethiopia during the year 2010–2014”, Advances in Space Research, 60, 1237–1248.
Keller K.A., M. Hesse, M. Kuznetsova, L. Rastätter, T. Moretto, T.I. Gombosi, and D.L. DeZeeuw, 2002. “Global MHD modeling of the impact of a solar wind pressure change”, J. Geophys. Res., 107, No. A7, 1126, doi:10.1029/2001JA000060 SMP21-1-8.
Kelley M.C., B.G. Fejer, and C.A. Gonzales, 1979. “An explanation for anomalous ionospheric electric fields associated with a northward turning of the interplanetary magnetic field”, Geophys. Res. Lett., 6, No. 4, 301-304.
Kelley M.C., J.J. Makela, J.L. Chau, and M.J. Nicolls, 2003. “Penetration of the solar wind electric field into the magnetosphere/ionosphere system”, Geophys. Res. Lett., 30, No. 4, 1158, doi:10.1029/2002GL016321, 7-1-3.
Kepko L., H.E. Spence, and H.J. Singer, 2002. “ULF waves in the solar wind as direct drivers of magnetospheric pulsations”, Geophys. Res. Lett., 29, No. 8, 1197, doi:10.1029/2001GL014405, 39-1-4.
Khalipov V.L., A.E. Stepanov, G.A. Kotova, S.E. Kobyakova, V.V. Bogdanov, A.B. Kaisin, and V.A. Panchenko, 2016. “Vertical Plasma Drift Velocities in the Polarization Jet Observation by Ground Doppler Measurements and Driftmeters on DMSP Satellites”, Geomagnetism and Aeronomy, 56, No. 5535–544. Original Russian Text published in Geomagnetizm i Aeronomiya, 56, No. 5, 568–578.
Kitamura K., H. Shimazu, S. Fujita, M. Kunitake, H. Shinagawa, and T. Tanaka, 2008. “Properties of AE indices derived from real-time global simulation and their implications for solar wind-magnetosphere coupling”, J. Geophys. Res., 113, A03S10, doi:10.1029/2007JA012514, 1-10.
Kivelson M.G., J. Etcheto, and J.G. Trotignon, 1984. “Global compressional oscillations of the terrestrial magnetosphere: The evidence and a model”, J. Geophys. Res., 89, No. A11, 9851-9856.
Klimas A.J., D. Vassiliadis, D.N. Baker, and D.A. Roberts, 1996. “The organized nonlinear dynamics of the magnetosphere”, J. Geophys. Res., 101, No. A6, 13089-13113.
Konstantinova A.V. and A.D. Danilov, 2015. “Choice of series of initial data in deriving trends in the ionospheric F2layer parameters”, Geomagnetizm i Aeronomiya, 55, No. 3, 344–352.
Krivolutsky A.A., L.A. Cherepanova, A.V. Dement’eva, A.I. Repnev, A.V. Klyuchnikova, 2015a. “Global Circulation of the Earth’s Atmosphere at Altitudes from 0 to 135 km simulated with the ARM model. Consideration of the Solar Activity Contribution”, Geomagnetism and Aeronomy, 55, No. 6, 780–800. Russian Text: Geomagnetizm i Aeronomiya, 55, No. 6, 808–828.
Kumar S., 2016. “Performance of IRI-2012 model during a deep solar minimum and a maximum year over global equatorial regions”, J. Geophys. Res. Space Physics, 121, 5664–5674, doi:10.1002/2015JA022269.
Kumar S., W. Chen, Z. Liu, and S. Ji, 2016. “Effects of solar and geomagnetic activity on the occurrence of equatorial plasma bubbles over Hong Kong”, J. Geophys. Res. Space Physics, 121, 9164–9178, doi:10.1002/2016JA022873.
Kuznetsov V.D., 2007. “From the geophysical to heliophysical year: the results of the coronas-F project”, Russ. J. Earth Sci., 9, ES3004, http:// dx.doi.org/10.2205/ 2007ES000276.
Kuznetsova T.V. and A.I. Laptukhov, 2009. “Response of the High-Latitude Polar Ionosphere to Changes in the Orientation of the Poynting Vector near the Earth Orbit Relative to the Geomagnetic Moment Orientation”, Geomagnetism and Aeronomy, 49, No. 8 (Special Issue 2), 1240–1242.
Laštovička J., 2009. “Lower ionosphere response to external forcing: A brief review”, Adv. Space. Res., 43, No. 1, 1–14.
Lee S.H., H. Zhang, Q.-G. Zong, A. Otto, H. Rème, and E. Liebert, 2016. “A statistical study of plasmaspheric plumes and ionospheric outflows observed at the dayside magnetopause”, J. Geophys. Res. Space Physics, 121, No. 1, doi:10.1002/2015JA021540, 492–506.
Li L.Y., J.B. Cao, J.Y. Yang, J.J. Berthelier, and J.-P. Lebreton, 2015. “Semiannual and solar activity variations of daytime plasma observed by DEMETER in the ionosphere-plasmasphere transition region”, J. Geophys. Res. Space Physics, 120, No. 12, doi:10.1002/2015JA021102, 10640–10653.
Lockwood M. and S.W.H. Cowley, 1992. “Ionospheric convection and the substorm cycle”, Proc. Int. Conf. Substorms, 1, 99–109.
Lockwood M., J. Moen, A.P. van Eyken, J.A. Davies, K. Oksavik, and I.W. McCrea, 2005. “Motion of the dayside polar cap boundary during substorm cycles: I. Observations of pulses in the magnetopause reconnection rate”, Ann. Geophys., 23, No. 11, 3495-3511.
Luan X., J. Lei, X. Dou, and T. Dang, 2016. “Double crests of peak height in the equatorial ionospheric F2 layer observed by COSMIC”, J. Geophys. Res. Space Physics, 121, No. 1, doi:10.1002/2015JA021611, 529–537.
Mangla B., D.K. Sharma, and A. Rajput, 2014. “Diurnal and seasonal variation of topside ionospheric ion density over Indian region at solar minimum and solar maximum”, Adv. Space Res., 54, No. 9, 1813-1817.
Milan S.E., 2004. “A simple model of the flux content of the distant magnetotail”, J. Geophys. Res., 109, No. A7, A07210, doi:10.1029/2004JA010397, 1-11.
Milan S.E., M. Lester, S.W.H. Cowley, K. Oksavik, M. Brittnacher, R.A. Greenwald, G. Sofko, and J.-P. Villain, 2003. “Variations in polar cap area during two substorm cycles”, Ann. Geophys., 21, No. 5, 1121-1140.
Milan S.E., S.W.H. Cowley, M. Lester, D.M. Wright, J.A. Slavin, M. Fillingim, C.W. Carlson, and H.J. Singer, 2004. “Response of the magnetotail to changes in open flux content of the magnetosphere”, J. Geophys. Res., 109, No. A4, A04220, doi:10.1029/2003JA010350, 1-16.
Milan S.E., B. Hubert, A. Grocott, and F. Creutzberg, 2005. “Formation and motion of a transpolar arc in response to dayside and nightside reconnection”, J. Geophys. Res., 110, No. A1, A01212, doi:10.1029/2004JA010835, 1-11.
Milan S.E., J.A. Wild, A. Grocott, and N.C. Draper, 2006. “Space- and ground-based investigations of solar wind-magnetosphere-ionosphere coupling”, Adv. Space. Res., 38, No. 8, 1671-1677.
Milan S.E., G. Provan, and B. Hubert, 2007. “Magnetic flux transport in the Dungey cycle: A survey of dayside and nightside reconnection rates”, J. Geophys. Res., 112, A01209, doi:10.1029/2006JA011642, 1-13.
Mishin V.M., V.V. Mishin, and A.V. Moiseev, 2016. “Distribution of the Field−Aligned Currents in the Ionosphere: Dawn–Dusk Asymmetry and Its Relation to the Asymmetry between the Two Hemispheres”, Geomagnetism and Aeronomy, 56, No. 5, 524–534. Original Russian Text published in Geomagnetizm i Aeronomiya, 56, No. 5, 558–567.
Motoba T., T. Kikuchi, T. Okuzawa, and K. Yumoto, 2003. “Dynamical response of the magnetosphere-ionosphere system to a solar wind dynamic pressure oscillation”, J. Geophys. Res., 108, No. A5, 1206, doi:10.1029/2002JA009696.
Motoba T., S. Fujita, T. Kikuchi, and T. Tanaka, 2007. “Solar wind dynamic pressure forced oscillation of the magnetosphere-ionosphere coupling system: A numerical simulation of directly pressure-forced geomagnetic pulsations”, J. Geophys. Res., 112, A11204, doi:10.1029/2006JA012193, 1-12.
Narayanan V.L., S. Gurubaran, K. Shiokawa, and K. Emperumal, 2016. “Shrinking equatorial plasma bubbles”, J. Geophys. Res. Space Physics, 121, doi:10.1002/2016JA022633.
Narock A., L. Rastaetter, M. Kuznetsova, and M. Hesse, 2004. “Realtime magnetosphere simulation at CCMC”, Eos Trans. AGU, 85, No. 47, Fall Meet. Suppl., Abstract SA43B-06.
Nicolls M.J., M. C. Kelley, J.L. Chau, O.Veliz, D. Anderson, and A. Anghel, 2007. “The spectral properties of low latitude daytime electric fields inferred from magnetometer observations”, J. Atmos. Sol. Terr. Phys., 69, No. 10-11, 1160-1173.
Ohtani S., S. Wing, V.G. Merkin, and T. Higuchi, (2014). “Solar cycle dependence of nightside field-aligned currents: Effects of dayside ionospheric conductivity on the solar wind-magnetosphere-ionosphere coupling”, J. Geophys. Res. Space Physics, 119, No. 1, doi:10.1002/2013JA019410, 322-334.
Pavlov A.V. and N.M. Pavlova, 2017. “Formation Mechanisms of the Midlatitudinal NmF2 Semiannual Anomaly under Daytime Quiet Geomagnetic Conditions at Low Solar Activity”, Geomagnetism and Aeronomy, 57, No. 4, 406–413. Original Russian Text published in Geomagnetizm i Aeronomiya, 57, No. 4, 441–449.
Perna L., M. Pezzopane, M. Pietrella, B. Zolesi, and L.R. Cander, 2017. “An updating of the SIRM model”, Advances in Space Research, 60, 1249–1260.
Pham K.H., R.E. Lopez, and R. Bruntz, 2016. “The effect of a brief northward turning in IMF Bz on solar wind magnetosphere coupling in a global MHD simulation”, J. Geophys. Res. Space Physics, 121, 4291–4299, doi:10.1002/ 2015JA021982.
Piersanti M. and U. Villante, 2016. “On the discrimination between magnetospheric and ionospheric contributions on the ground manifestation of sudden impulses”, J. Geophys. Res. Space Physics, 121, 6674–6691, doi:10.1002/2015JA021666.
Raeder J., 2003. “Global Magnetohydrodynamics – A Tutorial”, in Space Plasma Simulations, Lecture Notes in Physics, 615, edited by J. Buchner, C.T. Dum, and M. Scholer, Springer-Verlag, Berlin, Heidelberg, 212-246.
Raeder J., R.L. McPherron, L.A. Frank, S. Kokubun, G. Lu, T. Mukai, W.R. Paterson, J.B. Sigwarth, H.J. Singer, and J.A. Slavin, 2001b. “Global simulation of the Geospace Environment Modeling substorm challenge event”, J. Geophys. Res., 106, No. A1, 381-395.
Rajesh P.K., J.Y. Liu, C.H. Lin, A.B. Chen, R.R. Hsu, C.H. Chen, and J.D. Huba, 2016. “Space-based imaging of nighttime medium-scale traveling ionospheric disturbances using FORMOSAT-2/ISUAL 630.0 nm airglow observations”, J. Geophys. Res. Space Physics, 121, 4769–4781, doi:10.1002/2015JA022334.
Rout D., D. Chakrabarty, R. Sekar, G.D. Reeves, J.M. Ruohoniemi, T.K. Pant, B. Veenadhari, and K. Shiokawa, 2016. “An evidence for prompt electric field disturbance driven by changes in the solar wind density under northward IMF Bz condition”, J. Geophys. Res. Space Physics, 121, 4800–4810, doi:10.1002/2016JA022475.
Russell C.T., 1972. “The configuration of the magnetosphere”, in Critical Problems of Magnetospheric Physics, Proceedings of the Symposium held 11-13 May, 1972 in Madrid, Spain, edited by E.R. Dyer, Washington, DC, National Acad. of Sci., 1-16.
Samson J.C., B.G. Harrold, J.M. Ruohoniemi, R.A. Greenwald, and A.D.M. Walker, 1992a. “Field line resonances associated with MHD wave-guides in the magnetosphere”, Geophys. Res. Lett., 19, No. 5, 441-444).
Samson J.C., L.R. Lyons, P.T. Newell, F. Creutzberg, and B. Xu, 1992b. “Proton aurora and substorm intensifications”, Geophys. Res. Lett., 19, No. 21, 2167-2170.
Sarafopoulos D.V., 1995. “Long duration of Pc5 compressional pulsations inside the Earth’s magnetotail lobes”, Ann. Geophys., 13, No. 9, 926-937.
Sarafopoulos D.V., 2005. “Pseudo-field line resonances in ground Pc5 pulsation events”, Ann. Geophys., 23, No. 2, 593-608.
Scherliess L. and B.G. Fejer, 1999. “Radar and satellite global F region vertical drift model”, J. Geophys. Res., 104, No. A4, 6829-6842.
Senior C. and M. Blanc, 1984. “On the control of magnetospheric convection by the spatial distribution of ionospheric conductivities”, J. Geophys. Res., 89, No. A1, 261-284.
Sergeev V.A., D.A. Sormakov, and V. Angelopoulos, 2014. “A missing variable in solar wind-magnetosphere-ionosphere coupling ‎studies”, Geophys. Res. Lett., 41, No. 23, doi:10.1002/2014GL062271, 8215-8220.
Shaikh M.M., B. Nava, and A. Kashcheyev, 2017. “A model-assisted radio occultation data inversion method based on data ingestion into NeQuick”, Advances in Space Research, 59, 326–336.
Shubin V.N., A.T. Karpachev, V.A. Telegin, and K.G. Tsybulya, 2015. “Global Model SMF2 of the F2_Layer Maximum Height”, Geomagnetism and Aeronomy, 55, No. 5, 609–622. Russian Text:Geomagnetizm i Aeronomiya, 55, No. 5, 623–637.
Shukhtina M.A., N.P. Dmitrieva, and V.A. Sergeev, 2004. “Quantitative magnetotail characteristics of different magnetospheric states”, Ann. Geophys., 22, No. 3, 1019–1032.
Shukhtina M.A., N.P. Dmitrieva, N.G. Popova, V.A. Sergeev, A.G. Yahnin, and I.V. Despirak, 2005. “Observational evidence of the loadingunloading substorm scheme”, Geophys. Res. Lett., 32, No. 17, L17107, doi:10.1029/2005GL023779, 1-3.
Siscoe G.L. and T.S. Huang, 1985. “Polar cap inflation and deflation”, J. Geophys. Res., 90, No. A1, 543-547.
Slinker S.P., J.A. Fedder, W.J. Hughes, and J.G. Lyon, 1999. “Response of the ionosphere to a density pulse in the solar wind: simulation of traveling convection vortices”, Geophys. Res. Lett., 26, No. 23, 3549-3552.
Slinker S.P., J.A. Fedder, J.M. Ruohoniemi, and J.G. Lyon, 2001. “Global MHD simulation of the magnetosphere for November 24, 1996”, J. Geophys. Res., 106, No. A1, 361-380.
Slyunyaev N.N., E.A. Mareev, and A.A. Zhidkov, 2015. “On the variation of the ionospheric potential due to large-scale radioactivity enhancement and solar activity”, J. Geophys. Res. Space Physics, 120, No. 8, doi:10.1002/2015JA021039, 7060–7082.
Song P., R.C. Elphic, and C.T. Russell, 1988a. “ISEE 1 and 2 observation of the oscillating magnetopause”, Geophys. Res. Lett., 15, No. 8, 744-747.
Song P.R, C. Elphic, and C.T. Russell, 1988b. “Multi-spacecraft observations of magnetopause surface waves-ISEE 1 and 2 determinations of amplitude, wavelength and period”, Adv. Space Res., 8, No. 9-10, 245-248.
Su F., W. Wang, A.G. Burns, X. Yue, F. Zhu, and J. Lin, 2016. “Statistical behavior of the longitudinal variations of daytime electron density in the topside ionosphere at middle latitudes”, J. Geophys. Res. Space Physics, 121, 11,560–11,573, doi:10.1002/2016JA023029.
Sun L., J. Xu, W. Wang, X. Yue, W. Yuan, B. Ning, D. Zhang, and F.C. de Meneses, 2015. “Mesoscale field-aligned irregularity structures (FAIs) of airglow associated with medium-scale traveling ionospheric disturbances (MSTIDs)”, J. Geophys. Res. Space Physics, 120, No. 11, doi:10.1002/2014JA020944, 9839–9858.
Takahashi K., 1998. “ULF waves: 1997 IAGA division 3 reporter review”, Ann Geophys., 16, No. 7, 787-803.
Tanaka T., 1994. “Finite volume TVD Scheme on an unstructured grid system for three-dimensional MHD simulation of inhomogeneous systems including strong background potential fields”, J. Comput. Phys., 111, No. 2, 381-389.
Tanaka T., 1995. “Generation mechanisms for magnetosphere-ionosphere current system deduced from a three-dimensional MHD simulation of a solar wind-magnetosphere-ionosphere coupling processes”, J. Geophys. Res., 100, No. A7, 12057-12074.
Tanaka T., 1999. “Configuration of the magnetosphere-ionosphere convection system under northward IMF conditions with nonzero IMF By”, J. Geophys. Res., 104, No. A7, 14683-14690.
Tanaka T., 2000a. “Field-aligned-current system in the numerically simulated magnetosphere”, in Magnetospheric Current Systems, Geophys. Monogr. Ser., 118, edited by Shin-ichi Ohtani, R. Fujii, M. Hesse and R.L. Lysak, AGU, Washington, D.C., 53-60.
Tanaka T., 2000b. “The state transition model of the substorm onset”, J. Geophys. Res., 105, No. A9, 21081-21096.
Tariku Y.A., 2015. “TEC prediction performance of IRI-2012 model during a very low and a high solar activity phase over equatorial regions, Uganda”, J. Geophys. Res. Space Physics, 120, No. 7, doi:10.1002/2015JA021203, 5973–5982.
Tariku Y.A., 2016. “The Study of Variability of TEC over Mid-Latitude American Regions during the Ascending Phase of Solar Cycle 24 (2009–2011)”, Advances in Space Research, 58, 598–608.
Taylor J.R., T.K. Yeoman, M. Lester, B.A. Emery, and D.J. Knipp, 1996. “Variations in the polar cap area during intervals of substorm activity on 20-21 March 1990 deduced from AMIE convection patterns”, Ann. Geophys., 14, No. 9, 879-887.
Tian A.M., X.C. Shen, Q.Q. Shi, B.B. Tang, M. Nowada, Q.G. Zong, and S.Y. Fu, 2016. “Dayside magnetospheric and ionospheric responses to solar wind pressure increase: Multispacecraft and ground observations”, J. Geophys. Res. Space Physics, 121, 10,813–10,830, doi:10.1002/2016JA022459.
Tóth G., I.V. Sokolov, T.I. Gombosi, D.R. Chesncy, C.R. Clauer, D.L. De Zeeuw, K.C. Hansen, K.J. Kane, W.B. Manchester, R.C. Oehmke, K.G. Powell, A.J. Ridley, I.I. Roussev, Q.F. Stout, O. Volberg, R.A. Wolf, S. Sazykin, A. Chan, Yu Bin, and J. Kota, 2005. “Space Weather Modeling Framework: a new tool for the space science community”, J. Geophys. Res., 110, No. A12, A12226, doi:10.1029/2005JA011126, 1-21.
Tsunoda R.T., T. Maruyama, T. Tsugawa, T. Yokoyama, M. Ishii, T.T. Nguyen, T. Ogawa, and M. Nishioka, 2016a. “Off-great-circle paths in transequatorial propagation: 1. Discrete and diffuse types”, J. Geophys. Res. Space Physics, 121, 11,157–11,175, doi:10.1002/2015JA021695.
Tsunoda R.T., T. Maruyama, T. Tsugawa, T. Yokoyama, M. Ishii, T.T. Nguyen, T. Ogawa, and M. Nishioka, 2016b. “Off-great-circle paths in transequatorial propagation: 2. Nonmagnetic-fieldaligned reflections”, J. Geophys. Res. Space Physics, 121, 11,176–11,190, doi:10.1002/2016JA022404.
Tsurutani B.T., and W.D. Gonzalez, 1987. “The cause of high-intensity long-duration continuous AE activity (HILDCAAs): Interplanetary Alfvén wave trains”, Planet. Space Sci., 35, No. 4, 405-412.
Tsyganenko N.A. and M.I. Sitnov, 2005. “Modeling the dynamics of the inner magnetosphere during strong geomagnetic storms”, J. Geophys. Res., 110, A03208, doi:10.1029/2 004JA010798.
Venkata Ratnam D., G. Sivavaraprasad, and N.S.M.P. Latha Devi, 2017. “Analysis of ionosphere variability over low-latitude GNSS stations during 24th solar maximum period”, Advances in Space Research,

60, 419–434.
Wang H. and H. Lühr, 2016. “Longitudinal variation in zonal winds at subauroral regions: Possible mechanisms”, J. Geophys. Res. Space Physics, 121, No. 1, doi:10.1002/2 015JA022086, 745–763.
Wang H., H. Lühr, J.-H. Shue, H.U. Frey, G. Kervalishvili, T. Huang, X. Cao, G. Pi, and A.J. Ridley, 2014a. “Strong ionospheric field-aligned currents for radial interplanetary magnetic fields”, J. Geophys. Res. Space Physics, 119, No. 5, doi:10.1002/2014JA 019951, 3979-3995.
Watanabe M., S. Sakito, T. Tanaka, H. Shinagawa, and K.T. Murata, 2014. “Global MHD modeling of ionospheric convection and field-aligned currents associated with IMF By triggered theta auroras”, J. Geophys. Res. Space Physics, 119, No. 8, doi:10.1002/2013JA 019480, 6145-6166.
Watson C., P.T. Jayachandran, and J.W. MacDougall, 2016. “GPS TEC variations in the polar cap ionosphere: Solar wind and IMF dependence”, J. Geophys. Res. Space Physics, 121, 9030–9050, doi:10.1002/2016JA022937.
Wei Y., M. Hong, W. Wan, A. Du, J. Lei, B. Zhao, W. Wang, Z. Ren, and X. Yue, 2008. “Unusually long lasting multiple penetration of interplanetary electric field to equatorial ionosphere under oscillating IMF Bz”, Geophys. Res. Lett., 35, L02102, doi:10.1029/2007GL032305, 1-5.
Weimer D.R., 1999. “Substorm influence on the ionospheric electric potentials and currents”, J. Geophys. Res., 104, No. A1, 185-197.
Welling D.T. and M.W. Liemohn, 2016. “The ionospheric source of magnetospheric plasma is not a black box input for global models”, J. Geophys. Res. Space Physics, 121, 5559–5565, doi:10.1002/2016JA022646.
Wichaipanich N., K. Hozumi, P. Supnithi, and T. Tsugawa, 2017. “A comparison of neural network-based predictions of foF2 with the IRI-2012 model at conjugate points in Southeast Asia”, Advances in Space Research,

59, 2934–2950.


Wolf R.A., R.W. Spiro, S. Sazykin, and F.R. Toffoletto, 2007. “How the Earth’s inner magnetosphere works: An evolving picture”, J. Atmos. Sol. Terr. Phys., 69, No. 3, doi:10.1016/j.jastp.2006.07.026, 288-302.
Wolfe J.H., R.W. Silva, D.D. McKibbon, and R.H. Mason, 1967. “Preliminary observations of a geomagnetospheric wake at 1000 Earth radii”, J. Geophys. Res., 72, No. 17, 4577-4581.
Xi S., W. Lotko, B. Zhang, M. Wiltberger, and J. Lyon, 2016. “Effects of auroral potential drops on plasma sheet dynamics”, J. Geophys. Res. Space Physics, 121, 11,129–11,144, doi:10.1002/2016JA022856.
Xiong C., Y.-L. Zhou, H. Lühr, and S.-Y. Ma, 2016. “Diurnal evolution of the F region electron density local time gradient at low and middle latitudes resolved by the Swarm constellation”, J. Geophys. Res. Space Physics, 121, 9075–9089, doi:10.1 002/2016J A023034
Yakovets A.F., G.I. Gordienko, B.T. Zhumabayev, and Yu.G. Litvinov, 2016. “Statistical Features of NmF2 Enhancements According to Data from the Almaty Station in Solar Cycles 23 and 24”, Geomagnetism and Aeronomy, 56, No. 3, 311–317. Original Russian Text published in Geomagnetizm i Aeronomiya, 56, No. 3, 333–339.
Zaalov N.Y., E.V. Moskaleva, D.D. Rogov, and N.N. Zernov, 2015. “Influence of X-ray and polar cap absorptions on vertical and oblique sounding ionograms on different latitudes”, Adv. Space Res., 56, No. 11, 2527–2541.
Zaalov N.Y., E.V. Moskaleva, and T.S. Burmakina, 2017. “Application of the IRI model to the HF propagation model with optimization of the ionosphere parameters to day-to-day variation”, Adv. Space Research, 60, 2252–2267.
Zhang X., X. Shen, and G. Yuan, 2015a. “The solar cycle variations of plasma parameters and their correlations at topside ionosphere from DEMETER during 2005–2010”, Adv. Space Res., 56, No. 7, 1374–1388.
Zhang Q.-H., M. Lockwood, J.C. Foster, S.-R. Zhang, B.-C. Zhang, I.W. McCrea, J. Moen, M. Lester, and J.M. Ruohoniemi, 2015b. “Direct observations of the full Dungey convection cycle in the polar ionosphere for southward interplanetary magnetic field conditions”, J. Geophys. Res. Space Physics, 120, No. 6, doi:10.1002/2015JA021172, 4519–4530.
Zhang Y., J. Wu, L. Guo, Y. Hu, H. Zhao, and T. Xu, 2015c. “Influence of solar and geomagnetic activity on sporadic-E layer over low, mid and high latitude stations”, Adv. Space Res., 55, No. 5, 1366-1371.
Zhu Y., M. Kaufmann M. Ern, and M. Riese, 2015. “Nighttime atomic oxygen in themesopause region retrieved from SCIAMACHY O(1S) green line measurements and its response to solar cycle variation”, J. Geophys. Res. Space Physics, 120, No. 10, doi:10.1002/2015JA021405, 9057–9073.
Zwickl R.D., K.A. Doggett, S. Sahm, W.P. Barrett, R.N. Grubb, T.R. Detman, V.J. Raben, C.W. Smith, P. Riley, R.E. Gold, R.A. Mewaldt, and T. Maruyama, 1998. “The NOAA Real-Time Solar-Wind (RTSW) system using ACE data”, Space Sci. Rev., 86, No. 1, 633-648 (1998).

Chapter 2

Ahn B.-H., R.M. Robinson, Y. Kamide, and S.-I. Akasofu, 1983a. “Electric conductivities, electric fields and auroral particle energy injection rate in the auroral ionosphere and their empirical relations to the horizontal magnetic disturbances”, Planet. Space Sci., 31, No. 6, 641-653.
Ahn B.-H., S.-I. Akasofu, and Y. Kamide, 1983b. “The joule heat production rate and the particle energy injection rate as a function of the geomagnetic indices ae and al”, J. Geophys. Res., 88, No. A8, 6275-6287.
Aruliah A.L., D. Rees, and T.J. Fuller-Rowell, 1991. “The combined effect of solar and geomagnetic activity on high latitude thermospheric neutral winds. Part I. Observations”, J. Atmos. Terr. Phys., 53, No. 6-7, 467-483.
Baumjohann W. and Y. Kamide, 1984. “Hemispherical Joule heating and the AE indices”, J. Geophys. Res., 89, No. A1, 383-388.
Birk G.T. and A. Otto, 1996. “A three-dimensional plasma-neutral gas fluid code”, J. Comput. Phys., 125, No. A2, doi:10.1006/jcph.1996.0112, 513–525.
Brekke A., J.R. Doupnik, and P.M. Banks, 1974. “Incoherent scatter measurements of E region conductivities and currents in the auroral zone”, J. Geophys. Res., 79, No. 25, 3773-3790.
Bruinsma S.L., N. Sánchez-Ortiz, E. Olmedo, and N. Guijarro, 2012. “Evaluation of the DTM-2009 thermosphere model for benchmarking Purposes”, J. Space Weather Space Clim., 2, A04, DOI: 10.1051/swsc/2012005.
Buneman O., 1992. “Internal dynamics of a plasma propelled across a magnetic field”, IEEE Trans. Plasma Sci., 20, No. 6, doi:10.1109/27.199513, 672 – 677.
Buonsanto M.J., J.E. Salah, K.L. Miller, W.L. Oliver, R.G. Burnside, and P.G. Richards, 1989. “Observations of neutral circulation at midlatitudes during the equinox transition study”, J. Geophys. Res., 94, 16987–16997.
Burleigh M. and M. Zettergren, 2017. “Anisotropic fluid modeling of ionospheric upflow: Effects of low-altitude anisotropy and thermospheric winds”, J. Geophys. Res. Space Physics, 122, 808–827, doi:10.1002/2016JA023329.
Calabia A. and S. Jin, 2016. “New modes and mechanisms of thermospheric mass density variations from GRACE accelerometers”, J. Geophys. Res. Space Physics, 121, 11,191–11,212, doi:10.1002/2016JA022594.
Casali S.J. and W.N. Barker, 2002. “Dynamic calibration atmosphere (DCA) for the High Accuracy Satellite Drag Model (HASDM)”, paper AIAA-2002-4888 presented at AIAA/AAS Astrodynamics Specialist Conference, Am. Inst. of Aeronaut. and Astronaut., Monterey, Calif.
Chen M.W., M. Schulz, G. Lu, and L.R. Lyons, 2003. “Quasi-steady drift paths in a model magnetosphere with AMIE electric field: Implications for ring current formation”, J. Geophys. Res., 108, No. A5, 1180, doi:10.1029/2002JA009584.
Chen P., Y. Yao, Q. Li, and W. Yao, 2017a. “Modeling the plasmasphere based on LEO satellites onboard GPS measurements”, J. Geophys. Res. Space Physics, 122, 1221–1233, doi:10.1002/2016JA023375.
Chen C.-H., C. Lin, W.-H. Chen, and T. Matsuo, 2017b. “Modeling the ionospheric prereversal enhancement by using coupled thermosphere-ionosphere data assimilation”, Geophys. Res. Lett., 44, 1652–1659, doi:10.1002/2016GL071812.
Chu X. and Z. Yu, 2017. “Formation mechanisms of neutral Fe layers in the thermosphere at Antarctica studied with a thermosphere-ionosphere Fe/Fe+ (TIFe) model”, J. Geophys. Res. Space Physics,

122, 68126848, doi:10.1002/2016JA023773.


Chu X., Z. Yu, C.S. Gardner, C. Chen, and W. Fong, 2011. “Lidar observations of neutral Fe layers and fast gravity waves in the thermosphere (110–155 km) at McMurdo (77.8°S, 166.7°E), Antarctica”, Geophys. Res. Lett., 38, L23807, doi:10.1029/2011GL050016.
Chun F.K., D.J. Knipp, M.G. McHarg, G. Lu, B.A. Emery, S.Vennerstrøm, and O.A. Troshichev, 1999. “Polar cap index as a proxy for hemispheric Joule heating”, Geophys. Res. Lett., 26, No. 8, 1101-1104.
Chun F.K., D.J. Knipp, M.G. McHarg, J.R. Lacey, G. Lu, and B.A. Emery, 2002. “Joule heating patterns as a function of polar cap index”, J. Geophys. Res., 107, No. A7 1119, doi:10.1029/2001JA000246, SIA9-1-9.
Codrescu M.V., T.J. Fuller-Rowell, and J.C. Foster, 1995. “On the importance of E-field variability for Joule heating in the high-latitude Thermosphere”, Geophys. Res. Lett., 22, No. 17, 2393-2396.
Cowley S.W.H., 2000. “Magnetosphere-ionosphere interactions: A tutorial review”, in Magnetospheric Current Systems, Geophys. Monogr. Ser., 118, edited by edited by S.-I. Ohtani, R. Fujii, M. Hesse and R. L. Lysak, p. 91, AGU, Washington, D.C., doi: 10.1029/GM118p0091.
Dabbakuti J.R.K.K. and D.V. Ratnam, 2017. “Modeling and analysis of GPS-TEC low latitude climatology during the 24th solar cycle using empirical orthogonal functions”, Advances in Space Research, 60, 1751–1764.
Dao T., Y. Otsuka, K. Shiokawa, M. Nishioka, M. Yamamoto, S.M. Buhari, M. Abdullah, and A. Husin, 2017. “Coordinated observations of postmidnight irregularities and thermospheric neutral winds and temperatures at low latitudes”, J. Geophys. Res. Space Physics,

122, 7504–7518, doi:10.1002/2017JA024048.
Deng Y. and A.J. Ridley, 2006. “Dependence of neutral winds on convection E-field, solar EUV, and auroral particle precipitation at high latitudes”, J. Geophys. Res., 111, A09306, doi:10.1029/2005JA011368, 1-18.
Deng Y., Y. Huang, Q. Wu, J. Noto, D. Drob, and R.B. Kerr, 2014. “Comparison of the neutral wind seasonal variation from midlatitude conjugate observations”, J. Geophys. Res. Space Phys., 119. http://dx. doi.org/10.1002/2013JA019716.
De Wit T.D. and S. Bruinsma, 2017. “The 30 cm radio flux as a solar proxy for thermosphere density Modelling”, J. Space Weather Space Clim., 7, A9, DOI: 10.1051/swsc/2017008.
Dhadly M. and M. Conde, 2017. “Trajectories of thermospheric air parcels flowing over Alaska, reconstructed from ground-based wind measurements”, J. Geophys. Res. Space Physics, 122, 6635–6651, doi:10.1002/2017JA024095.


Dhadly M.S., J. Meriwether, M. Conde, and D. Hampton, 2015. “First ever cross comparison of thermospheric wind measured by narrow- and wide-field optical Doppler spectroscopy”, J. Geophys. Res. Space Physics, 120, No. 11, doi:10.1002/2015JA021316, 9683–9705.
Dhadly M., J. Emmert, D. Drob, M. Conde, E. Doornbos, G. Shepherd, J. Makela, Q. Wu, R. Niciejewski, and A. Ridley, 2017. “Seasonal dependence of northern high-latitude upper thermospheric winds: A quiet time climatological study based on ground-based and space-based measurements”, J. Geophys. Res. Space Physics, 122, 2619–2644, doi:10.1002/2016JA023688.
Dreher J., 1997. “On the self-consistent description of dynamic magnetosphere-ionosphere coupling phenomena with resolved ionosphere”, J. Geophys. Res., 102, No. A1, doi:10.1029/96JA02800, 85–94.
Evans D.S., N.C. Maynard, J. Trein, T. Jacobsen, and A. Egeland, 1977. “Auroral vector electric field and particle comparison. 2. Electrodynamics of an arc”, J. Geophys. Res., 82, No. 16, 2235-2249.
Evonosky W., A.D. Richmond, T.-W. Fang, and A. Maute, 2016. “Ion-neutral coupling effects on low-latitude thermospheric evening winds”, J. Geophys. Res. Space Physics, 121, 4638–4646, doi:10.1002/2016JA022382.
Fang T.-W., R.A. Akmaev, R.A. Stoneback, T. Fuller-Rowell, H. Wang, and F. Wu, 2016. “Impact of midnight thermosphere dynamics on the equatorial ionospheric vertical drifts”, J. Geophys. Res. Space Physics, 121, 4858–4868, doi:10.1002/2015JA022282.
Fedder J.A. and J.G. Lyon, 1995. “The Earth’s magnetosphere is 165 RE long: Self-consistent currents, convection, magnetospheric structure, and processes for northward interplanetary magnetic field”, J. Geophys. Res., 100, No. A3, doi:10.1029/94JA0263, 3623–3635.
Ferreira A.A., R.A. Borges, C. Paparini, L. Ciraolo, and S.M. Radicella, 2017. “Short-term estimation of GNSS TEC using a neural network model in Brazil”, Advances in Space Research, 60, 1765–1776.
Foppiano A.J., X.A. Torres, M.A. Arriagada, and P.A. Flores, 2003. “Meridional thermospheric winds over the Antarctic Peninsula longitude sector”, J. Atmos. Sol. Terr. Phys., 65, 305–314.
Foppiano A.J., Y.-I. Won, X.A. Torres, P.A. Flores, A.D. Veloso, and M.A. Arriagada, 2016. “Ionosonde and optical determinations of thermospheric neutral winds over the Antarctic Peninsula”, Advances in Space Research, 58, 2026–2036.
Forbes J.M., S.L. Bruinsma, E. Doornbos, and X. Zhang, 2016. “Gravity wave-induced variability of the middle thermosphere”, J. Geophys. Res. Space Physics, 121, 6914–6923, doi:10.1002/2016JA022923.
Foster J.C., J.-P. St.-Maurice, and V.J. Abreu, 1983. “Joule heating at high latitudes”, J. Geophys. Res., 88, No. A6, 4885-4897.
Gao Q., X. Chu, X. Xue, X. Dou, T. Chen, and J. Chen, 2015. “Lidar observations of thermospheric Na layers up to 170 km with a descending tidal phase at Lijiang (26.7°N, 100.0°E), China”, J. Geophys. Res. Space Physics, 120, No. 10, doi:10.1002/2015JA021808, 9213–9220.
Garcia R.F., S. Bruinsma, L. Massarweh, and E. Doornbos, 2016. “Medium-scale gravity wave activity in the thermosphere inferred from GOCE data”, J. Geophys. Res. Space Physics, 121, 8089–8102, doi:10.1002/2016JA022797.
Gasperini F., J.M. Forbes, and M.E. Hagan, 2017. “Wave coupling from the lower to the middle thermosphere: Effects of mean winds and dissipation”, J. Geophys. Res. Space Physics,

122, 7781–7797, doi:10.1002/2017JA024317.
Grebowsky J. and M. Pharo, 1985. “The source of midlatitude metallic ions at F-region altitudes”, Planet. Space Sci.,

33(7), 807–815, doi:10.1016/0032-0633(85)90034-0.
Gu S.-Y., X. Dou, J. Lei, T. Li, X. Luan, W. Wan, and J.M. Russell , 2014. “Ionospheric response to the ultrafast Kelvin wave in the MLT region”, J. Geophys. Res. Space Physics, 119, No. 2, doi:10.1002/2013JA019086, 1369-1380.
Hedin A.E., 1992. “Horizontal wind model (HWM) (1990)”, Planet. Space Sci., 40, No. 4, 556-557.
Hedin A.E., N.W. Spencer, and T.L. Killeen, 1988. “Empirical global model of upper thermosphere winds based on Atmosphere and Dynamics Explorer satellite data”, J. Geophys. Res., 93, No. A9, 9959-9978.
Hedin A.E., M.A. Biondi, R.G. Burnside, G. Hernandez, R.M. Johnson, T.L. Killeen, C. Mazaudier, J.W. Meriwether, J.E. Salah, R.J. Sica, R.W. Smith, N.W. Spencer, V.B. Wickwar, and T.S. Virdi, 1991. “Revised global model of thermosphere winds using satellite and ground-based observations”, J. Geophys. Res., 96, 7657–7688.
Hedin A.E., E.L. Fleming, A.H. Manson, F.J. Schmidlin, S.K. Avery, R.R. Clark, S.J. Franke, G.J. Fraser, T. Tsuda, F. Vial, and R.A. Vincent, 1996. “Empirical wind model for the upper, middle and lower atmosphere”, J. Atmos. Terr. Phys., 58, No. 13, 1421-1447.
Iipponen J. and T. Laitinen, 2015. “A method to predict thermospheric mass density response to geomagnetic disturbances using time-integrated auroral electrojet index”, J. Geophys. Res. Space Physics, 120, No. 7, doi:10.1002/2015JA021093, 5746–5757.
Jacchia L.G., 1970. “New static models of the thermosphere and exosphere with empirical temperature profiles”, SAO Spec. Rep.No. 313, Smithson. Inst. Astrophys. Observ., Cambridge, Massachusetts, 1-87.
Jones M. Jr., J.M. Forbes, and M.E. Hagan, 2016. “Solar cycle variability in mean thermospheric composition and temperature induced by atmospheric tides”, J. Geophys. Res. Space Physics, 121, 5837–5855, doi:10.1002/2016JA022701.
Jones M., Jr., J.T. Emmert, D.P. Drob, and D.E. Siskind, 2017, “Middle atmosphere dynamical sources of the semiannual oscillation in the thermosphere and ionosphere”, J. Geophys. Res. Lett., 44, 12–21, doi:10.1002/2016GL071741.
Kamide Y., A.D. Richmond, and S. Matsushita, 1981. “Estimation of ionospheric electric fields, ionospheric currents, and field-aligned currents from ground magnetometer records”, J. Geophys. Res., 86, No. A2, 801-813.
Kamide Y., B.-H. Ahn, S.-I. Akasofu, W. Baumjohann, E. Friis-Christensen, H.W. Kroehl, H. Maurer, A.D. Richmond, G. Rostoker, R.W. Spiro, J.K. Walker, and A.N. Zaitzev, 1982. “Global distribution of ionospheric and fieldaligned currents during substorms as determined from six IMS meridian chains of magnetometers: Initial results”, J. Geophys. Res., 87, No. A10, 8228-8240.
Karan D.K. and D. Pallamraju, 2017. “Small-scale longitudinal variations in the daytime equatorial thermospheric wave dynamics as inferred from oxygen dayglow emissions”, J. Geophys. Res. Space Physics,

122, 6528–6542, doi:10.1002/2017JA023891.
Karatay S., A. Cinar, and F. Arikan, 2017. “Ionospheric responses during equinox and solstice periods over Turkey”, Advances in Space Research, 60, 1958–1967.
Killeen T.L. and R.G. Roble, 1984. “An analysis of the high-latitude thermospheric wind pattern calculated by a thermospheric general circulation model: 1. Momentum forcing”, J. Geophys. Res., 89, No. A9, 7509-7522.
Killeen T.L., R.A. Heelis, P.B. Hays, N.W. Spencer, and W.B. Hanson, 1985. “Neutral motions in the polar thermosphere for northward interplanetary magnetic field”, Geophys. Res. Lett., 12, No. 4, 159-162.
Killeen T.L., R.G. Roble, and N.W. Spencer, 1987. “A computer model of global thermospheric winds and temperatures”, Adv. Space Res., 7, No. 10, 207-215.
Killeen T.L., Y.I. Won, R.J. Niciejewski, and A.G. Burns, 1995. “Upper thermosphere winds and temperatures in the geomagnetic polar cap: Solar cycle, geomagnetic activity, and interplanetary magnetic field dependencies”, J. Geophys. Res., 100, No. A11, 21327-21342.
Kim H. et al., 2017. “Simultaneous observations of traveling convection vortices: Ionosphere-thermosphere coupling”, J. Geophys. Res. Space Physics, 122, 4943–4959, doi:10.1002/2017JA023904.
Kunitake M. and K. Schlegel, 1991. “Neutral winds in the lower thermosphere at high latitudes from five years of EISCAT data”, Ann. Geophys., Atmos. Hydrospheres Space Sci. (France)., 9, No. 2, 143-155.
Kuwabara M., K. Yoshioka, G. Murakami, F. Tsuchiya, T. Kimura, A. Yamazaki, and I. Yoshikawa, 2017. “The geocoronal responses to the geomagnetic disturbances”, J. Geophys. Res. Space Physics, 122, 1269–1276, doi:10.1002/2016JA023247.
Kwak Y.-S. and A.D. Richmond, 2017. “Relative contributions of momentum forcing and heating to high-latitude lower thermospheric winds”, J. Geophys. Res. Space Physics, 122, 1031–1041, doi:10.1002/2016JA023124.
Laštovička J. and J. Chum, 2017. ”A review of results of the international ionospheric Doppler sounder network”, Advances in Space Research, 60, 1629–1643.
Lathuillère C., J. Lilensten, W. Gault, and G. Thuillier, 1997. ” Meridional wind in the auroral thermosphere: Results from EISCAT and WINDII-O(1D) coordinated measurements”, J. Geophys. Res., 102, No. A3, 4487-4492.
Li X., W. Wan, Z. Ren, L. Liu, and B. Ning, 2015. “The variability of nonmigrating tides detected from TIMED/SABER observations”, J. Geophys. Res. Space Physics, 120, 10,793–10,808, doi:10.1002/2015JA021577.
Li X., W. Wan, Z. Ren, and Y. Yu, 2017. “The variability of SE2 tide extracted from TIMED/SABER observations”, J. Geophys. Res. Space Physics, 122, 2136–2150, doi:10.1002/2016JA023435.
Liu H., N. Pedatella, and K. Hocke, 2017. “Medium-scale gravity wave activity in the bottom side F region in tropical regions”, Geophys. Res. Lett., 44, 7099–7105, doi:10.100 2/2017GL073855.
Lomidze L., L. Scherliess, and R. W. Schunk, 2015. “Magnetic meridional winds in the thermosphere obtained from Global Assimilation of Ionospheric Measurements (GAIM) model”, J. Geophys. Res. Space Physics, 120, No. 9, doi:10.1002/2015JA021098, 8025–8044.
Lu G., A.D. Richmond, H. Lühr, and L. Paxton, 2016. “High-latitude energy input and its impact on the thermosphere”, J. Geophys. Res. Space Physics, 121, 7108–7124, doi:10. 1002/2015JA022294.
Luan X., W. Wang, A. Burns, and X. Dou, 2017. “Solar cycle variations of thermospheric O/N2 longitudinal pattern from TIMED/GUVI”, J. Geophys. Res. Space Physics, 122, 2605–2618, doi:10.1002/2016JA023696.
Lysak R.L. and C.T. Dum, 1983. “Dynamics of magnetosphere-ionosphere coupling including turbulent transport”, J. Geophys. Res., 88, No. A1, doi:10.1029/ JA088iA01p00365, 365–380
Mahmoudian A., A.R. Mohebalhojeh, M.M. Farahani, W.A. Scales, and M. Kosch, 2017. “Remote sensing of mesospheric dust layers using active modulation of PMWE by high-power radio waves”, J. Geophys. Res. Space Physics, 122, 843–856, doi:10.1002 /2016JA023388.
Matsuda T.S., T. Nakamura, M.K. Ejiri, M. Tsutsumi, and K. Shiokawa, 2014. “New statistical analysis of the horizontal phase velocity distribution of gravity waves observed by airglow imaging”, J. Geophys. Res. Atmos., 119, 9707–9718, doi:10.1002/ 2014JD021543
Mayr H.G., I. Harris, and N.W. Spencer, 1978. “Some properties of upper atmosphere dynamics”, Rev. Geophys. Space Phys., 16, 539–565, doi:10.1029/RG016i004p00539.
McCormac F.G., T.L. Killeen, J.P. Thayer, G. Hernandez, C.R. Tschan, J.J. Ponthieu, and N.W. Spencer, 1987. “Circulation of the polar thermosphere during geomagnetically quiet and active times as observed by Dynamics Explorer 2”, J. Geophys. Res., 92, No. A6, 10133-10139.
McCormac F.G., T.L. Killeen, and J.P. Thayer, 1991. “The influence of IMF By on the high-latitude thermospheric circulation during northward IMF”, J. Geophys. Res., 96, No. A1, 115-128.
Meriwether J.W., Jr., 1983. “Observations of thermospheric dynamics at high latitude from ground and space”, Radio Sci., 18, No. 6, 1035-1052.
Meriwether J.W., Jr. and P. Shih, 1987. “On the nighttime signatures of thermospheric winds observed at Sondrestrom, Greenland, as correlated with interplanetary magnetic field parameters”, Ann. Geophys., Series A – Upper Atmosphere and Space Sciences, 5, No. 6, 329-336.
Mikhailov A.V. and L. Perrone, 2016a. “Geomagnetic control of the mid-latitude daytime foF1 and foF2 long-term variations: Physical interpretation using European observations”, J. Geophys. Res. Space Physics, 121, 7193–7203, doi:10.1002/2016JA022716.
Mikhailov A.V. and L. Perrone, 2016b. “Thermospheric parameters long-term variations retrieved from ionospheric observations in Europe”, J. Geophys. Res. Space Physics, 121, 11,574–11,583, doi:10.1002/2016JA023234.
Mikkelsen I.S., T.S. Jorgensen, M.C. Kelley, M.F. Larsen, E. Pereira, and J. Vickery, 1981. “Neutral winds and electric fields in the dusk auroral oval: 1. Measurements”, J. Geophys. Res., 86, No. A3, 1513-1524.
Miller K.L., D.G. Torr, and P.G. Richards, 1986. “Meridional winds in the thermosphere derived from measurements of F2 layer height”, J. Geophys. Res., 91, 4531–4535.
Mlynczak M.G., L.A. Hunt, J.M. Russell III, B.T. Marshall, C.J. Mertens, and R.E. Thompson, 2016. “The global infrared energy budget of the thermosphere from 1947 to 2016 and implications for solar variability”, Geophys. Res. Lett., 43, 11,934–11,940, doi:10.1002/2016GL070965.
Niciejewski R.J., T.L. Killeen, R.M. Johnson, and J.P. Thayer, 1992. “The behaviour of the high-latitude f-region neutral thermosphere in relation to IMF parameters”, Adv. Space Res., 12, No. 6, 215-218.
Niciejewski R.J., T.L. Killeen, and Y. Won, 1994. “Observations of neutral winds in the polar cap during northward IMF”, J. Atmos. Terr. Phys., 56, No. 2, 285-295.
Qian L. and J. Yue, 2017. “Impact of the lower thermospheric winter-to-summer residual circulation on thermospheric composition”, Geophys. Res. Lett.,

44, 3971–3979, doi:10.1002/2017GL073361.
Qian L., S.C. Solomon, and T.J. Kane, 2009. “Seasonal variation of thermospheric density and composition”, J. Geophys. Res., 114, A01312, doi:10.1029/2008JA013643.
Qian L., A.G. Burns, W. Wang, S.C. Solomon, and Y. Zhang, 2016. “Longitudinal variations of thermospheric composition at the solstices”, J. Geophys. Res. Space Physics, 121, 6818–6829, doi:10.1002/2016JA022898.
Pimenta A.A., P.R. Fagundes, J.A. Bittencourt, Y. Sahai, D. Gobbi, A.F. Medeiros, M.J. Taylor, and I. Takahashi, 2001. “Ionospheric plasma bubble zonal drift: a methodology using OI630 nm all-sky imaging systems”, Adv. Space Res., 27, 1219–1224.
Raeder J., R.J. Walker, and M. Ashour-Abdalla, 1995. “The structure of the distant magnetotail during long periods of northward IMF”, Geophys. Res. Lett., 22, No. 4, 349-352.
Rastogi R.G., H. Chandra, P. Janardhan, B.W. Reinisch, and S.K. Bisoi, 2017. “Post sunset equatorial spread-F at Kwajalein and interplanetary magnetic field”, Advances in Space Research, 60, 1708–1715.
Reber C.A., and P.B. Hays, 1973. “Thermospheric wind effects on the distribution of helium and argon in the Earth’s upper atmosphere”, J. Geophys. Res., 78, 2977–2991, doi:10.1029/JA078i016p02977.
Rees D., T.J. Fuller-Rowell, R. Gordon, T.L. Killeen, P.B. Hays, L. Wharton, and N.W. Spencer, 1983. ” A comparison of wind observations of the upper thermosphere from the Dynamics Explorer satellite with the predictions of a global time-dependent model “, Planet. Space Sci., 31, No. 11, 1299-1314.
Rees D., T.J. Fuller-Rowell, R. Gordon, M.F. Smith, N.C. Maynard, J.P. Heppner, N.W. Spencer, L. Wharton, P.B. Hays, and T.L. Killeen, 1986. “A theroretical and empirical study of the response of the high latitude thermosphere to the sense of the ‘Y’ component of the interplanetary magnetic field”, Planet. Space Sci., 34, No. 1, 1-40.
Richards P.G., 1991. “An improved algorithm for the determining neutral winds from the height of the F2 peak electron density”, J. Geophys. Res., 96, 17839–17846.
Richmond A.D. and Y. Kamide, 1988. “Mapping electrodynamic features of the high-latitude ionosphere from local observations: Technique”, J. Geophys. Res., 93, No. A6, 5741-5759.
Richmond A.D. and J.P. Thayer, 2000. “Ionospheric electrodynamics: A tutorial”, in Magnetospheric Current Systems, Geophys. Monogr. Ser., 118, edited by S.-I. Ohtani, R. Fujii, M. Hesse and R. L. Lysak, p. 131, AGU, Washington, D.C., doi: 10.1029/GM118p0131.
Richmond A.D., Y. Kamide, S.-I. Akasofu, D. Alcayde, M. Blanc, O. De la Beaujardiere, D.S. Evans, J.C. Foster, E. Friis-Christensen, J.M. Holt, R.J. Pellinen, C. Senior, and A.N. Zaitzev, 1990. “Global measures of ionospheric electrodynamic activity inferred from combined incoherent scatter radar and ground magnetometer observations”, J. Geophys. Res., 95, No. A2, 1061-1071.
Richmond A.D., C. Lathuillère, and S. Vennerstroem, 2003. “Winds in the high-latitude lower thermosphere: Dependence on the interplanetary magnetic field”, J. Geophys. Res., 108, No. A2, 1066, doi:10.1029/2002JA009493, SIA10-1-14.
Roble R.G., R.E. Dickinson, E.C. Ridley, B.A. Emery, P.B. Hays, T.L. Killeen, and N.W. Spencer, 1983. “The high-latitude circulation and temperature structure of the thermosphere near solstice”, Planet. Space Sci., 31, No. 12, 1479-1499.
Roble R.G., B.A. Emery, R.E. Dickinson, E.C. Ridley, T.L. Killeen, P.B. Hays, G.R. Carignan, and N.W. Spencer, 1984. “Thermospheric circulation, temperature, and compositional structure of the southern hemisphere polar cap during October-November 1981”, J. Geophys. Res., 87, No. A10, 9057-9068.
Rodger A.S., G.D. Wells, R.J. Moffett, and G.J. Bailey, 2001. “The variability of Joule heating, and its effects on the ionosphere and thermosphere”, Ann. Geophys., 19, No. 7, 773-781.
Rothwell P., R. Mountford, and G. Martelli, 1974. “Neutral wind modifications above 150 km altitude associated with the polar substorm”, J. Atmos. Terr. Phys., 36, No. 11, 1915-1926.
Sai Gowtam V. and S. Tulasi Ram, 2017. “Ionospheric winter anomaly and annual anomaly observed from Formosat-3/COSMIC Radio Occultation observations during the ascending phase of solar cycle 24”, Advances in Space Research, 60, 1585–1593.
Salinas C.C.J.H., L.C. Chang, M.-C. Liang, J. Yue, J. Russell III, and M. Mlynczak, 2016, “Impacts of SABER CO2-based eddy diffusion coefficients in the lower thermosphere on the ionosphere/thermosphere”, J. Geophys. Res. Space Physics, 121, 12,080–12,092, doi:10.1002/2016JA023161.
Sergeeva M.A., O.A. Maltseva, J.A. Gonzalez-Esparza, V. De la Luz, and P. Corona-Romero, “Features of TEC behaviour over the low-latitude North-American region during the period of medium solar activity”, Advances in Space Research, 60, 1594–1605.
Shepherd M.G., 2016. “WINDII observations of thermospheric O(1D) nightglow emission rates, temperature, and wind: 1. The northern hemisphere midnight temperature maximum and the wave 4”, J. Geophys. Res. Space Physics, 121, 11,450–11,473, doi:10.1002/2016JA022703.
Siscoe G.L., 2001. “70 years of magnetospheric modeling”, in Space Weather, Geophys. Monogr. Ser., 125, edited by P. Song, H.J. Singer, and G.L. Siscoe, AGU, Washington, D.C., doi:10.1029/GM125p0211, 211-227.
Song P., T.I. Gombosi, and A.D. Ridley, 2001. “Three-fluid Ohm’s law”, J. Geophys. Res., 106, No. A5, doi:10.1029/2000JA000423, 8149–8156.
Song P., V.M. Vasyliūnas, and L. Ma, 2005a. “A three-fluid model of solar wind-magnetosphere-ionosphere-thermosphere coupling”, in Multiscale Coupling of Sun-Earth Processes, edited by A.T.Y. Lui, Y. Kamide, and G. Consolini, p. 447, Elsevier, Amsterdam.
Song P., V.M. Vasyliūnas, and L. Ma, 2005b. “Solar wind-magnetosphere-ionosphere coupling: Neutral atmosphere effects on signal propagation”, J. Geophys. Res., 110, A09309, doi:10.1029/2005JA011139.
Song P., V.M. Vasyliūnas, and X.-Z. Zhou, 2009. “Magnetosphere-ionosphere/thermosphere coupling: Self-consistent solutions for a one-dimensional stratified ionosphere in three-fluid theory”, J. Geophys. Res., 114, A08213, doi:10.1029/2008JA013629.
Sreekumar S. and S. Sripathi, 2016. “Nighttime thermospheric meridional winds as inferred from ionosonde parameters over Indian region and their plausible effects on plasma irregularities”, Advances in Space Research, 58 (1), 92–107.
Sreekumar S. and S. Sripathi, 2017. “A seasonal study on the role of h’F/meridional winds in influencing the development of ESF irregularities over Indian sector”, Advances in Space Research,

60, 652–666.


Storz M.F., B.R. Bowman, and Maj. J.I. Branson, 2002. “High accuracy Satellite Drag Model (HASDM)”, Paper AIAA-2002-4886 presented at AIAA/AAS Astrodynamics Specialist Conference, Am. Inst. of Aeronaut. and Astronaut., Monterey, Calif.
Strangeway R.J. and J. Raeder, 2001. “On the transition from collisionless to collisional magnetohydrodynamics”, J. Geophys. Res., 106, No. A2, 1955, doi:10.1029/2000JA 900116.
Sutton E.K., 2016, “Interhemispheric transport of light neutral species in the thermosphere”, J. Geophys. Res. Lett., 43, 12,325–12,332, doi:10.1002/2016GL071679.
Takeo D., K. Shiokawa, H. Fujinami, Y. Otsuka, T.S. Matsuda, M.K. Ejiri, T. Nakamura, and M. Yamamoto, 2017. “Sixteen year variation of horizontal phase velocity and propagation direction of mesospheric and thermospheric waves in airglow images at Shigaraki, Japan”, J. Geophys. Res. Space Physics, 122, 8770–8780, doi:10.1002/ 2017JA023919.
Tanaka T., 1995. “Generation mechanisms for magnetosphere-ionosphere current system deduced from a three-dimensional MHD simulation of a solar wind-magnetosphere-ionosphere coupling processes”, J. Geophys. Res., 100, No. A7, 12057-12074.
Tardelli-Coelho F., A.A. Pimenta , A. Tardelli , J.R. Abalde, and K. Venkatesh, 2017. “Plasma blobs associated with plasma bubbles observed in the Brazilian sector”, Advances in Space Research, 60, 1716–1724.
Thayer J.P. and T.L. Killeen, 1991. “Vorticity and divergence in the high-latitude upper thermosphere”, Geophys. Res. Lett., 18, No. 4, 701-704.
Thayer J P., T.L. Killeen, F.G. McCormac, C.R. Tschan, J.J. Ponthieu, and N.W. Spencer, 1987. “Thermospheric neutral wind signatures dependent on the east-west component of the interplanetary magnetic field for northern and southern hemispheres as measured by Dynamics Explorer-2”, Ann. Geophys., Ser. A – Upper Atmosphere and Space Sci., 5, No. 6, 363-368.
Tsuda T.T., X. Chu, T. Nakamura, M.K. Ejiri, T.D. Kawahara, A.S. Yukimatu, and K. Hosokawa, 2015. “A thermospheric Na layer event observed up to 140 km over Syowa Station (69.0°S, 39.6°E) in Antarctica”, Geophys. Res. Lett., 42, 3647–3653, doi:10.1002/2015GL064101.
Tsuda T.T., T. Nakamura, M.K. Ejiri, T. Nishiyama, K. Hosokawa, T. Takahashi, J. Gumbel, and J. Hedin, 2017. “Statistical investigation of Na layer response to geomagnetic activity using resonance scattering measurements by Odin/OSIRIS”, Geophys. Res. Lett.,

44, 5943–5950, doi:10.1002/2017GL072801.


Twinomugisha F., N. Ssebiyonga, and F.M. D’ujanga, 2017. “TEC derived from some GPS stations in East African equatorial region and comparison with the TEC from NeQuick2 model”, Advances in Space Research, 60, 1905–1920.
Vadas S.L. and G. Crowley, 2017. “Neutral wind and density perturbations in the thermosphere created by gravity waves observed by the TIDDBIT sounder”, J. Geophys. Res. Space Physics,

122, 6652–6678, doi:10.1002/2016JA023828.


Vasyliūnas V.M., 1970. “Mathematical models of magnetospheric convection and its coupling to the ionosphere”, in Particles and Fields in the Magnetosphere, edited by B.M. McCormac, Springer, New York, 60-71.
Vasyliūnas V.M., 2001. “Electric field and plasma flow: What drives what?”, Geophys. Res. Lett., 28, No. 11, doi:10.1029/2001GL013014, 2177–2180.
Vasyliūnas V.M., 2005a. “Time evolution of electric fields and currents and the generalized Ohm’s law”, Ann. Geophys., 23, No. 4, 1347- 1354.
Vasyliunas V.M., 2005b. “Relation between magnetic fields and electric currents in plasmas”, Ann. Geophys., 23, No. 7, 2589-2597.
Vasyliūnas V.M., 2007. “The mechanical advantage of the magnetosphere: Solar-wind-related forces in the magnetosphere-ionosphere-Earth system”, Ann. Geophys., 25, No. 1, 255–269.
Vasyliūnas V.M. and P. Song, 2005. “Meaning of ionospheric Joule heating”, J. Geophys. Res., 110, No. A2, A02301, doi:10.1029/2004JA010615, 1-8.
Venkatesh K. and M. Pezzopane, 2017. “Studies on mesosphere, thermosphere and ionosphere from equatorial to mid latitudes – Recent investigations and improvements – Part 1”, Advances in Space Research, 60, 1583–1584.
Verhulst T.G.W. and S.M. Stankov, 2017. “Height-dependent sunrise and sunset: Effects and implications of the varying times of occurrence for local ionospheric processes and modelling”, Advances in Space Research, 60, 1797–1806.
Verhulst T. et al., 2017. “Vertical and oblique HF sounding with a network of synchronised ionosondes”, Advances in Space Research, 60, 1644–1656.
Vickrey J.F., R.R. Vondrak, and S.J. Matthews, 1982. “Energy deposition by precipitating particles and Joule dissipation in the auroral ionosphere”, J. Geophys. Res., 87, No. A7, 5184-5196.
Wang H., J. Zhang, H. Lühr, and Y. Wei, 2017a. “Longitudinal modulation of electron and mass densities at middle and auroral latitudes: Effect of geomagnetic field strength”, J. Geophys. Res. Space Physics,

122, 6595–6610, doi:10.1002/2016JA023829.


Wang N., U. Ramirez, F. Flores, and S. Datta-Barua, 2017b. “Lagrangian coherent structures in the thermosphere: Predictive transport barriers”, Geophys. Res. Lett.,

44, 4549–4557, doi:10.1002/2017GL072568.


Weimer D.R., 1996. “A flexible IMF dependent model of high-latitude electric potentials having ‘space weather’ applications”, Geophys. Res. Lett., 23, No. 18, 2549-2552.
Weimer D.R., 2001a. “An improved model of ionospheric electric potentials including substorm perturbations and application to the Geospace Environment Modeling November 24, 1996 event”, J. Geophys. Res., 106, No. A1, 407-416.
Weimer D.R., 2001b. “Maps of ionospheric field-aligned currents as a function of the interplanetary magnetic field derived from Dynamics Explorer 2 data”, J. Geophys. Res., 106, No. A7, 12889-12902.
Weimer D.R., 2005. “Improved ionospheric electrodynamic models and application to calculating Joule heating rates”, J. Geophys. Res., 110, No. A5, A05306, doi:10.1029/2004JA010884, 1-21.
Weimer D.R., E.K. Sutton, M.G. Mlynczak, and L.A. Hunt, 2016. “Intercalibration of neutral density measurements for mapping the thermosphere”, J. Geophys. Res. Space Physics, 121, 5975–5990, doi:10.1002/2016JA022691.
Wilson G.R., D.R. Weimer, J.O. Wise, and F.A. Marcos, 2006. “Response of the thermosphere to Joule heating and particle precipitation”, J. Geophys. Res., 111, No. A10, A10314, doi:10.1029/2005JA011274, 1-9.
Wolf R.A., 1970. “Effects of ionospheric conductivity on convection flow of plasma in the magnetosphere”, J. Geophys. Res., 75, No. 25, doi:10.1029/JA075i025p04677, 4677-4698 (1970).
Wu Q., G. Jee, C. Lee, J.-H. Kim, Y.H. Kim, W. Ward, and R.H. Varney, 2017. “First simultaneous multistation observations of the polar cap thermospheric winds”, J. Geophys. Res. Space Physics, 122, 907–915, doi:10.1002/2016JA023560.
Xie H.Y., B.Q. Ning, X.K. Zhao, and L.H. Hu, 2017. “Case study of simultaneous observations of sporadic sodium layer, E-region field-aligned irregularities and sporadic E layer at low latitude of China”, Advances in Space Research, 59, 1559–1567.
Xiong C., H. Lühr, and B.G. Fejer, 2016. “The response of equatorial electrojet, vertical plasma drift, and thermospheric zonal wind to enhanced solar wind input”, J. Geophys. Res. Space Physics, 121, 5653–5663, doi:10.1002/2015JA022133.
Yiğit E. and A.S. Medvedev, 2017. “Influence of parameterized small-scale gravity waves on the migrating diurnal tide in Earth’s thermosphere”, J. Geophys. Res. Space Physics,

122, 4846–4864, doi:10.1002/2017JA024089.
Yiğit E., A.D. Aylward, and A.S. Medvedev, 2008. “Parameterization of the effects of vertically propagating gravity waves for thermosphere general circulation models: Sensitivity study”, J. Geophys. Res.,

113, D19106, doi:10.1029/2008JD010135.
Yu T., C. Xia, X. Zuo, C. Huang, T. Mao, L. Liu, and Z. Liu, 2016. “A comparison of mesospheric and low-thermospheric winds measured by Fabry-Perot interferometer and meteor radar over central China”, J. Geophys. Res. Space Physics, 121, 10,037–10,051, doi:10.1002/2016JA022997.
Zhang S.P. and G.G. Shepherd, 2000. “Neutral winds in the lower themosphere observed by WINDII during the April 4–5th, 1993 storm”, Geophys. Res. Lett., 27, No. 13, 1855-1858.
Zhang B., W. Wang, Q. Wu, D. Knipp, L. Kilcommons, O.J. Brambles, J. Liu, M. Wiltberger, J.G. Lyon, and I. Häggström, 2016. “Effects of magnetospheric lobe cell convection on dayside upper thermospheric winds at high latitudes”, Geophys. Res. Lett., 43, 8348–8355, doi:10.1002/2016GL069834.
Zhang X., L. Liu, and S. Liu, 2017. “Dependence of thermospheric zonal winds on solar flux, geomagnetic activity, and hemisphere as measured by CHAMP”, J. Geophys. Res. Space Physics, 122, 8893–8914, doi:10.1002/2016JA023715.
Zhu H., A. Otto, D. Lummerzheim, M.H. Rees, and B.S. Lanchester, 2001. “Ionosphere-magnetosphere simulation of small-scale structure and dynamics”, J. Geophys. Res., 106, No. A2, doi:10.1029/1999JA000291, 1795–1806.

Chapter 3

Batista I.S., C.M.N. Candido, J.R. Souza, M.A. Abdu, R.C. de Araujo, L.C.A. Resende, and A.M. Santos, 2017. “F3 layer development during quiet and disturbed periods as observed at conjugate locations in Brazil: The role of the meridional wind”, J. Geophys. Res. Space Physics, 122, 2361–2373, doi:10.1002/2016JA023724.
Bowman B.R., W.K. Tobiska, F.A Marcos., and C. Valladares, 2008a. “The JB2006 empirical thermospheric density model”, J. Atmos. Solar Terr. Phys., 70, No. 5, 774–793.
Bowman B.R., K. Tobiska, F.A. Marcos, C.Y. Huang, C.S. Lin, and W.J. Burke, 2008b. “A new empirical thermospheric density model JB2008 using new solar and geomagnetic indices”, in Proceedings of AIAA/AASS Astrodynamics Specialist Conference, Hawaii, AIAA 2008-6438, 1-19.
Bruinsma S., D. Tamagan, and R. Biancale, 2004. “Atmospheric densities derived from CHAMP/STAR accelerometer observation”, Planet. Space Sci. 52, No. 4, 297–312.
Bruinsma S., J.M Forbes, R.S. Nerem, and X. Zhang, 2006. “Thermosphere density response to the 20–21 November, 2003 solar and geomagnetic storm from CHAMP and GRACE accelerometer data” J. Geophys. Res. 111, A06303, doi:10.1029/2005JA011284.
Chaitanya P.P., A.K. Patra, N. Balan, and S.V.B. Rao, 2016. “Unusual behavior of the low-latitude ionosphere in the Indian sector during the deep solar minimum in 2009”, J. Geophys. Res. Space Physics, 121, doi:10.1002/2015JA022061.
Dawkins E.C.M., J.M.C. Plane, M.P. Chipperfield, W. Feng, D.R. Marsh, J. Höffner, and D. Janches, 2016. “Solar cycle response and long-term trends in the mesospheric metal layers”, J. Geophys. Res. Space Physics, 121, 7153–7165, doi:10.1002/2016JA022522.
Edwards T.R., D.R. Weimer, W.K. Tobiska, and N. Olsen, 2017. “Field-aligned current response to solar indices”, J. Geophys. Res. Space Physics, 122, 5798–5815, doi:10.1002/2016JA023563.
Emmert J.T., S.E. McDonald, D.P. Drob, R.R. Meier, J.L. Lean, and J.M. Picone, 2014. “Attribution of interminima changes in the global thermosphere and ionosphere”, J. Geophys. Res. Space Physics, 119, No. 8, doi:10.1002/2013JA019484, 6657-6688.
Fahrutdinova A.N., S.V. Maksyutin, and M.V.Elakhov, 2013. “Effects of sector structure of the interplanetary magnetic field on the upper mesosphere-lower thermosphere dynamics)”, Adv. Space Res., 52, No. 11, 1959-1965.
Forbes J.M., 2000. “Wave coupling between the lower and upper atmosphere: case study of an ultra-fast Kelvin wave”, J. Atmos. Sol. Terr. Phys., 62, No. 17–18, 1603–1621.
Forbes J.M., G. Lu, S. Bruinsma, R.S. Nerem, and X. Zhang, 2006. “Thermosphere density variation due to the April 15–24, 2002 solar event from CHAMP/STAR accelerometer measurements” J. Geophys. Res. 110, A12S27, doi:10.1029/2004JA010856, 1-9.
Fytterer T., M.L. Santee, M. Sinnhuber, and S. Wang, 2015. “The 27day solar rotational effect on mesospheric nighttime OH and O3 observations induced by geomagnetic activity”, J. Geophys. Res. Space Physics, 120, No. 9, doi:10.1002/2015JA021183, 7926–7936.
Guha A., B. Paul, M. Chakraborty, and B.K. De, 2016. “Tropical cyclone effects on the equatorial ionosphere: First result from the Indian sector”, J. Geophys. Res. Space Physics, 121, doi:10.1002/2016JA022363.
Guo J., W. Wan, J.M. Forbes, E. Sutton, R.S. Nerem, T.N. Woods, S. Bruinsma, L. and Liu, 2007. “Effects of solar variability on thermosphere density from CHAMP accelerometer data”, J. Geophys. Res. 112, A10308, doi:10.1029/2007JA012409.
Hatten N. and R.P. Russell, 2017. “A smooth and robust Harris-Priester atmospheric density model for low Earth orbit applications”, Advances in Space Research, 59, 571–586.
Häusler K., M.E. Hagan, A.J.G. Baumgaertner, A. Maute, G. Lu, E. Doornbos, S. Bruinsma, J.M. Forbes, and F. Gasperini, 2014. “Improved short-term variability in the thermosphere-ionosphere-mesosphere-electrodynamics general circulation model”, J. Geophys. Res. Space Physics, 119, No. 8, doi:10.1002/2014JA020006, 6623-6630.
Hsu V.W., J.P. Thayer, J. Lei, and W. Wang, 2014. “Formation of the equatorial thermosphere anomaly trough: Local time and solar cycle variations”, J. Geophys. Res. Space Physics, 119, No. 12, doi:10.1002/2014JA020416, 10456-10473.
Jacchia L.G., 1971. “Revised static models of the thermosphere and exosphere with empirical temperature profiles”. Smithson. Astrophys. Special Report 332.
Kotovsky D.A., R.C. Moore, Y. Zhu et al., 2016. “Initial breakdown and fast leaders in lightning discharges producing long-lasting disturbances of the lower ionosphere”, J. Geophys. Res. Space Physics, 121, 5794–5804, doi:10.1002/2015JA022266.
Krall J., J.D. Huba, R.E. Denton, G. Crowley, and T.-W. Wu, 2014. “The effect of the thermosphere on quiet time plasmasphere morphology”, J. Geophys. Res. Space Physics, 119, No. 6, doi:10.1002/2014JA019850, 5032-5048.
Krall J., J.T. Emmert, F. Sassi, S.E. McDonald, and J.D. Huba, 2016. “Day-to-day variability in the thermosphere and its impact on plasmasphere refilling”, J. Geophys. Res. Space Physics, 121, 6889–6900, doi:10.1002/2015JA022328.
Kren A.C., P. Pilewskie, and O. Coddington, 2017. “Where does Earth’s atmosphere get its energy?”, J. Space Weather Space Clim., 7, A10, DOI: 10.1051/swsc/2017007.
Krivolutsky A.A., L.A. Cherepanova, and A.V. Dement’eva, 2015. “Solar cycle influence on troposphere and middle atmosphere via ozone layer in the presence of planetary waves: Simulation with ARM”, J. Geophys. Res. Space Physics, 120, No. 10, doi:10.1002/2015JA021363, 8298–8306.
Lai C., J. Yue, J. Xu, W.C. Straka III, S.D. Millerf, and X. Liu, 2017. “Suomi NPP VIIRS/DNB imagery of nightglow gravity waves from various sources over China”, Advances in Space Research, 59, 1951–1961.
Laskar F.I., D. Pallamraju, B. Veenadhari, T.V. Lakshmi, M.A. Reddy, and S. Chakrabarti, 2015. “Gravity waves in the thermosphere: Solar activity dependence”, Adv. Space Res., 55, No. 6, 1651-1659.
Lathuillère C. and M. Menvielle, 2010. “Comparison of the observed and modeled low- to mid-latitude thermosphere response to magnetic activity: Effects of solar cycle and disturbance time delay”, Adv. Space. Res., 45, No. 9, 1093–1100.
Lathuillère C., M. Menvielle, A. Marchaudon, and S. Bruinsma, 2008. “A statistical study of the observed and modeled global thermosphere response to magnetic activity at middle and low latitudes”, J. Geophys. Res. 113, A07311, doi:10.1029/2007JA012991.
Lean J.L., S.E. McDonald, J.D. Huba, J.T. Emmert, D.P. Drob, and C.L. Siefring, 2014. “Geospace variability during the 2008–2009 Whole Heliosphere Intervals”, J. Geophys. Res. Space Physics, 119, No. 5, doi:10.1002/2013JA019485, 3755-3776.
Lee Y.-S., Y.-S. Kwak, K.-C. Kim, B. Solheim, R. Lee, and J. Lee, 2017. “Observation of atomic oxygen O(1S) green-line emission in the summer polar upper mesosphere associated with high-energy (≥30 keV) electron precipitation during high-speed solar wind streams”, J. Geophys. Res. Space Physics, 122, 1042–1054, doi:10.1002/2016JA023413.
Lei J., W. Wang, J.P. Thayer, X. Luan, X. Dou, A.G. Burns, and S.C. Solomon, 2014a. “Simulations of the equatorial thermosphere anomaly: Geomagnetic activity modulation”, J. Geophys. Res. Space Physics, 119, No. 8, doi:10.1002/2014JA020152, 6821-6832.
Lilensten J., M. Barthélemy, G. Besson, H. Lamy, M.G. Johnsen, and J. Moen, 2016. “The thermospheric auroral red line Angle of Linear Polarization”, J. Geophys. Res. Space Physics, 121, 7125–7134, doi:10.1002/2016JA022941.
Liu H., H. Lühr, V. Henize, and W. Köhler, 2005. “Global distribution of the thermospheric total mass density derived from CHAMP”, Geophys. Res. 110, A04301, doi:10.1029/2004JA010741.
Liu X., J.P. Thayer, A. Burns, W. Wang, and E. Sutton, 2014. “Altitude variations in the thermosphere mass density response to geomagnetic activity during the recent solar minimum”, J. Geophys. Res. Space Physics, 119, No. 3, doi:10.1002/2013JA019453, 2160-2177.
Liu X., J. Xu, S.-R. Zhang, Q. Zhou, and W. Yuan, 2015. “Solar activity dependency of multiday oscillations in the nighttime thermospheric winds observed by Fabry-Perot interferometer”, J. Geophys. Res. Space Physics, 120, No. 7, doi:10.1002/2015JA021375, 5871–5881.
Liu H., E. Doornbos, and J. Nakashima, 2016. “Thermospheric wind observed by GOCE: Wind jets and seasonal variations”, J. Geophys. Res. Space Physics, 121, 6901–6913, doi:10.1002/2016JA022938.
Liu L., H. Liu, H. Le, Y. Chen, Y.-Y. Sun, B. Ning, L. Hu, W. Wan, N. Li, and J. Xiong, 2017. “Mesospheric temperatures estimated from the meteor radar observations at Mohe, China”, J. Geophys. Res. Space Physics, 122, 2249–2259, doi:10.1002/2016JA023776.
Mann I., I. Häggström, A. Tjulin, S. Rostami, C.C. Anyairo, and P. Dalin, 2016. “First wind shear observation in PMSE with the tristatic EISCAT VHF radar”, J. Geophys. Res. Space Physics, 121, 11,271–11,281, doi:10.1002/2016JA023080.
Mlynczak M.G., L.A. Hunt, B.T. Marshall, J.M. Russell III, C.J. Mertens, R.E. Thompson, and L.L. Gordley, 2015. “A combined solar and geomagnetic index for thermospheric climate”, Geophys. Res. Lett., 42, No. 10, doi:10.1002/2015GL064038, 3677-3682.
Oyama K.-I., J.T. Jhou, J.T. Lin, C. Lin, H. Liu, and K. Yumoto, 2014. “Ionospheric response to 2009 sudden stratospheric warming in the Northern Hemisphere”, J. Geophys. Res. Space Physics, 119, No. 12, doi:10.1002/2014JA020014, 10260-10275.
Park J., H. Lühr, M. Nishioka, and Y.-S. Kwak, 2015a. “Plasma density undulations correlated with thermospheric neutralmass density in the daytime low-latitude to midlatitude topside ionosphere”, J. Geophys. Res. Space Physics, 120, No. 8, doi:10.1002/2015JA021525, 6669–6678.
Patra A.K., P. Pavan Chaitanya, S. Sripathi, and S. Alex, 2014. “Ionospheric variability over Indian low latitude linked with the 2009 sudden stratospheric warming”, J. Geophys. Res. Space Physics, 119, No. 5, doi:10.1002/2014JA019847, 4044-4061.
Perwitasari S., T. Sakanoi, T. Nakamura, M.K. Ejiri, M. Tsutsumi, Y. Tomikawa, Y. Otsuka, A. Yamazaki, and A. Saito, 2016. “Three years of concentric gravity wave variability in the mesopause as observed by IMAP/VISI”, Geophys. Res. Lett., 43, 11,528–11,535, doi:10.1002/2016GL071511.
Picone J.M., A.E. Hedin, D.P. Drob, and A.C. Aikin, 2002. “NRLMSISE-00 empirical model of the atmosphere: statistical comparisons and scientific issues”, J. Geophys. Res., 107, No. A12, doi:10.1028/2002JA009430, SIA 15-1-16.
Pudovkin M.I. and O.M. Raspopov, 1992. “Mechanism of solar activity influence on low atmosphere condition and meteorological parameters (review)”, Geomagn. Aeron., 32, No. 5, 1–22 (in Russian).
Ryu K., Y. Kwak, Y.H. Kim, J. Park, J. Lee, and K. Min, 2016. “Variation of the topside ionosphere during the last solar minimum period studied with multisatellite measurements of electron density and temperature”, J. Geophys. Res. Space Physics, 121, 7269–7286, doi:10.1002/2015JA022317.
Schmidtke G., S.V. Avakyan, J. Berdermann, V. Bothmer, G. Cessateur, L. Ciraolo, L. Didkovsky, T. Dudok de Wit, F.G. Eparvier, A. Gottwald, M. Haberreiter, R. Hammer, Ch. Jacobi, N. Jakowski, M. Kretzschmar, J. Lilensten, M. Pfeifer, S.M. Radicella, R. Scha¨fer, W. Schmidt, S.C. Solomon, G. Thuillier, W.K. Tobiska, S. Wieman, and T.N. Woods, 2015. “Where does the Thermospheric Ionospheric GEospheric Research (TIGER) Program go?”, Adv. Space Res., 56, No. 8, 1547–1577.
Sharma A.K., G.A. Chavan, O.B. Gurav, H.P. Gaikwad, R.N. Ghodpage, and D.P. Nade, 2017. “Dynamics of ionospheric irregularities in increasing phase of 24th solar cycle at Kolhapur (16.4 N, 74.2 E)”, Advances in Space Research, 60, 2195–2205.
Shen Y., D.J. Knudsen, J.K. Burchill, A. Howarth, A. Yau, R.J. Redmon, D.M. Miles, R.H. Varney, and M.J. Nicolls, 2016. “Strong ambipolar-driven ion upflow within the cleft ion fountain during low geomagnetic activity”, J. Geophys. Res. Space Physics, 121, doi:10.1002/2016JA022532.
Sumod S.G., T.K. Pant, C. Vineeth, and M.M. Hossain, 2014. “On the ionospheric and thermospheric response of solar flare events of 19 January 2005: An investigation using radio and optical techniques”, J. Geophys. Res. Space Physics, 119, No. 6, doi:10.1002/2013JA019714, 5049-5059.
Sutton E.K., J.M. Forbes, and R.S. Nerem, 2005. “Global thermospheric neutral density and wind response to the severe 2003 geomagnetic storms from CHAMP accelerometer data” J. Geophys. Res. 110, A09S40, doi:10.1029/2004JA010985.
Sutton E.K., J.M. Forbes, and D.J. Knipp, 2009. “Rapid response of the thermosphere to variations in Joule heating” J. Geophys. Res. 114, A04319, doi:10.1029/2008JA013667.
Takahashi T. et al., 2017. “Depletion of mesospheric sodium during extended period of pulsating aurora”, J. Geophys. Res. Space Physics, 122, 1212–1220, doi:10.1 002/2016JA023472.
Tang C., D. Liu, H. Wei, Y. Wang, C. Dai, P. Wu, W. Zhu, and R. Rao, 2016. “The response of the temperature of coldpoint mesopause to solar activity based on SABER data set”, J. Geophys. Res. Space Physics, 121, 7245–7255, doi:10.1002/2016JA022538.
Tu J., P. Song, and V.M. Vasyliūnas, 2014. “Inductive-dynamic magnetosphere-ionosphere coupling via MHD waves”, J. Geophys. Res. Space Physics, 119, No. 1, doi:10.1002/2013JA018982, 530-547.
Uvarov V.M. and R.Yu. Lukianova, 2015. “Numerical modeling of the polar F region ionosphere taking into account the solar wind conditions”, Adv. Space Res., 56, No. 11, 2563–2574.
Verkhoglyadova O.P., J.M. Wissing, S. Wang, M.-B. Kallenrode, and G.P. Zank, 2016. “Nighttime mesospheric hydroxyl enhancements during SEP events and accompanying geomagnetic storms: Ionization rate modeling and Aura satellite observations”, J. Geophys. Res. Space Physics, 121, doi:10.1002/2015JA022217.
Wang S., L. Weng, H. Fang, Y. Xie, and S. Yang, 2014. “Intra-annual variations of the thermospheric density at 400 km altitude from 1996 to 2006”, Adv. Space Res., 54, No. 3, 327-332.
Wang X., F. Yi, and K. Huang, 2017. “Double sporadic metal layers as observed by colocated Fe and Na lidars at Wuhan, China”, J. Geophys. Res. Space Physics, 122, 2237–2248, doi:10.1002/ 2016JA023489.
Wu D.L., J.-H. Yee, E. Schlecht, I. Mehdi, J. Siles, and B.J. Drouin, 2016. “THz limb sounder (TLS) for lower thermospheric wind, oxygen density, and temperature”, J. Geophys. Res. Space Physics, 121, doi:10.1002/2015JA022314.
Xu J., A.K. Smith, W. Wang, G. Jiang, W. Yuan, H. Gao, J. Yue, B. Funke, M. Lo´ pez-Puertas, and J.M. Russell III, 2013. “An observational and theoretical study of the longitudinal variation in neutral temperature induced by aurora heating in the lower thermosphere”, J. Geophys. Res. Space Physics, 118, No. 11, doi:10.1002/20 13JA019144, 7410-7425.
Yamazaki Y., M.J. Kosch, and E.K. Sutton, 2015. “North-south asymmetry of the high-latitude thermospheric density: IMF BY effect”, Geophys. Res. Lett., 42, No. 2, doi:10.1002/2014GL062748, 225-232.
Yang Z. and Z. Liu, 2016. “Observational study of ionospheric irregularities and GPS scintillations associated with the 2012 tropical cyclone Tembin passing Hong Kong”, J. Geophys. Res. Space Physics, 121, 4705–4717, doi:10.1002/2016JA022398.
Yiğit E. and A.S. Medvedev, 2015. “Internal wave coupling processes in Earth’s atmosphere”, Adv. Space Res., 55, No. 4, 983-1003.
Zhao C. et al., 2016. “Force balance at the magnetopause determined with MMS: Application to flux transfer events”, Geophys. Res. Lett., 43, 11,941–11,947, doi:10.100 2/2016GL071568.
Zhu J. and A.J. Ridley, 2014. “Modeling subsolar thermospheric waves during a solar flare and penetration electric fields”, J. Geophys. Res. Space Physics, 119, No. 12, doi:10.1002/2014JA020473, 10507-10527.

Chapter 4

Abdu M.A., 1997. “Major phenomena of the equatorial ionosphere–thermosphere system under disturbed conditions”, J. Atmos. Solar Terr. Phys., 5, No. 13, 1505–1519.
Alberti T., G. Consolini, F. Lepreti, M. Laurenza, A. Vecchio, and V. Carbone, 2017. “Timescale separation in the solar wind-magnetosphere coupling during St. Patrick’s Day storms in 2013 and 2015”, J. Geophys. Res. Space Physics, 122, 4266–4283, doi:10.1002/2016JA023175.
Astafyeva E., I. Zakharenkova, and E. Doornbos, 2015a. “Opposite hemispheric asymmetries during the ionospheric storm of 29–31 August 2004”, J. Geophys. Res. Space Physics, 120, No. 1, doi:10.1002/2014JA020710, 697-714.
Astafyeva E., I. Zakharenkova, and M. Förster, 2015b. “Ionospheric response to the 2015 St. Patrick’s Day storm: A global multi-instrumental overview”, J. Geophys. Res. Space Physics, 120, No. 10, doi:10.1002/2015JA021629, 9023–9037.
Astafyeva E., I. Zakharenkova, and Y. Pineau, 2016. “Occurrence of the dayside three-peak density structure in the F2 and the topside ionosphere”, J. Geophys. Res. Space Physics, 121, 6936–6949, doi:10.1002/2016JA022641.
Azzouzi I., Y. Migoya-Orue´, C. Amory Mazaudier, R. Fleury, S.M. Radicella, and A. Touzani, 2015. “Signatures of solar event at middle and low latitudes in the Europe-African sector, during geomagnetic storms, October 2013”, Adv. Space Res., 56, No. 9, 2040–2055.
Bag T., M.V. Sunil Krishna, Shilpa Gahlot, Vir Singh, 2014. “Effect of severe geomagnetic storm conditions on atomic oxygen greenline dayglow emission in mesosphere”, Adv. Space Res., 53, No. 8, 1255-1264.
Bag T., V. Singh, and M.V. Sunil Krishna, 2017. “Study of atomic oxygen greenline dayglow emission in thermosphere during geomagnetic storm conditions”, Advances in Space Research, 59, 302–310.
Bagiya M.S., A.S. Sunil, D. Chakrabarty, and S. Sunda, 2017. “Salient features of the dayside low latitude ionospheric response to the main phase step-I of the 17 March 2015 geomagnetic storm”, Advances in Space Research, 60, 1827–1837.
Barkhatov N.A., V.G. Vorob’ev, S.E. Revunov, and O.I. Yagodkina, 2017. “Effect of Solar Dynamics Parameters on the Formation of Substorm Activity”, Geomagnetism and Aeronomy, 57, No. 3, 251–256. Original Russian Text published in Geomagnetizm i Aeronomiya, 57, No. 3, 273–279.
Becker-Guedes F., Y. Sahai, P.R. Fagundes, E.S. Espinoza, V.G. Pillat, W.L.C. Lima, Su. Basu, Sa. Basu, Y. Otsuka, K. Shiokawa, E.M. Mackenzie, X. Pi, and J.A. Bittencourt, 2007. “The ionospheric response in the Brazilian sector during the super geomagnetic storm on 20 November 2003” Ann. Geophys. 25, No. 4, 863–873.
Beckers J.M. and M. Rixen, 2003. “EOF calculations and data filling from incomplete oceanographic datasets”, J. Atmos. Oceanic Technol., 20(12), 1839–1856.
Belehaki A., I. Kutiev, P. Marinov, I. Tsagouri, K. Koutroumbas, and P. Elias, 2017. “Ionospheric electron density perturbations during the 7–10 March 2012 geomagnetic storm period”, Advances in Space Research, 59, 1041–1056.
Blagoveshchensky D.V., O.A. Maltseva, M.M. Anishin, M.A. Sergeeva, and D.D. Rogov, 2016. “Impact of the magnetic superstorm on March 17–19, 2015 on subpolar HF radio paths: Experiment and modeling”, Advances in Space Research, 58, 835–846.
Borries C., J. Berdermann, N. Jakowski, and V. Wilken, 2015. “Ionospheric storms-A challenge for empirical forecast of the total electron content”, J. Geophys. Res. Space Physics, 120, No. 4, doi:10.1002/2015JA020988, 3175-3186.
Borries C., A.M. Mahrous, N.M. Ellahouny, and R. Badeke, 2016. “Multiple ionospheric perturbations during the Saint Patrick’s Day storm 2015 in the European-African sector”, J. Geophys. Res. Space Physics, 121, 11,333–11,345, doi:10.1002/2016JA023178.
Borries C., N. Jakowski, K. Kauristie, O. Amm, J. Mielich, and D. Kouba, 2017. “On the dynamics of large-scale traveling ionospheric disturbances over Europe on 20 November 2003”, J. Geophys. Res. Space Physics, 122, 1199–1211, doi:10.1002/2016JA023050.
Buonsanto M.J., 1999. “Ionospheric storms – A review”, Space Sci. Rev., 88, No. 3-4, 563-601.
Carter B.A., E. Yizengaw, R. Pradipta, J.M. Retterer, K. Groves, C. Valladares, R. Caton, C. Bridgwood, R. Norman, and K. Zhang, 2016. “Global equatorial plasma bubble occurrence during the 2015 St. Patrick’s Day storm”, J. Geophys. Res. Space Physics, 121, No. 1, doi:10.1002/2015JA022194, 894–905.
Chartier A.T., D.R. Jackson, and C.N. Mitchell, 2013. “A comparison of the effects of initializing different thermosphere-ionosphere model fields on storm time plasma density forecasts”, J. Geophys. Res. Space Physics, 118, No. 11, doi:10.1002/2013JA019034, 7329-7337.
Chartier A.T., T. Matsuo, J.L. Anderson, N. Collins, T.J. Hoar, G. Lu, C.N. Mitchell, A. J. Coster, L. J. Paxton, and G.S. Bust, 2016. “Ionospheric data assimilation and forecasting during storms”, J. Geophys. Res. Space Physics, 121, No. 1, doi:10.1002/2014JA020799, 764–778.
Chaston C.C., J.W. Bonnell, J.R. Wygant, C.A. Kletzing, G.D. Reeves, A. Gerrard, L. Lanzerotti, and C.W. Smith, 2015. “Extreme ionospheric ion energization and electron heating in Alfvén waves in the storm time inner magnetosphere”, Geophys. Res. Lett., 42, No. 24, doi:10.1002/2015GL066674, 10531–10540.
Chen G.-M., J. Xu, W. Wang, J. Lei, and S.-R. Zhang, 2014. “The responses of ionospheric topside diffusive fluxes to two geomagnetic storms in October 2002”, J. Geophys. Res. Space Physics, 119, No. 8, doi:10.1002/2014JA020013, 6806-6820.
Chen C.H., C.H. Lin, T. Matsuo, W.H. Chen, I.T. Lee, J.Y. Liu, J.T. Lin, and C.T. Hsu, 2016a. “Ionospheric data assimilation with thermosphere-ionosphere-electrodynamics general circulation model and GPS-TEC during geomagnetic storm conditions”, J. Geophys. Res. Space Physics, 121, 5708–5722, doi:10.1002/2015JA021787.
Chen C.H., C.H. Lin, T. Matsuo, and W.H. Chen, 2016b. “Ionosphere data assimilation modeling of 2015 St. Patrick’s Day geomagnetic storm”, J. Geophys. Res. Space Physics, 121, 11,549–11,559, doi:10.1002/2016JA023346.
Chen X., J. Lei, W. Wang, A.G. Burns, X. Luan, and X. Dou, 2016c. “A numerical study of nighttime ionospheric variations in the American sector during 28–29 October 2003”, J. Geophys. Res. Space Physics, 121, 8985–8994, doi:10.1002/2016JA023091.
Cherniak Iu.V., I.E. Zakharenkova, D. Dzubanov, and A. Krankowski, 2014. “Analysis of the ionosphere/plasmasphere electron content variability during strong geomagnetic storm”, Adv. Space Res., 54, No. 4, 586-594.
Cherniak I., I. Zakharenkova, and R.J. Redmon, 2015. “Dynamics of the high-latitude ionospheric irregularities during the 17 March 2015 St. Patrick’s Day storm: Ground-based GPS measurements”, SpaceWeather, 13, No. 9, doi:10.1002/2015SW001237, 585–597.
Choudhury A., B.K. De, A. Guha, and R. Roy, 2015. “Long-duration geomagnetic storm effects on the D region of the ionosphere: Some case studies using VLF signal”, J. Geophys. Res. Space Physics, 120, No. 1, doi:10.1002/2014JA020738, 778-787.
Clausen L.B.N., S.E. Milan, and A. Grocott, 2014. “Thermospheric density perturbations in response to substorms”, J. Geophys. Res. Space Physics, 119, No. 6, doi:10.1002/2014JA019837, 4441-4455.
De Abreu A.J., P.R. Fagundes, M. Gende, O.S. Bolaji, R. De Jesus, C. Brunini, 2014. “Investigation of ionospheric response to two moderate geomagnetic storms using GPS–TEC measurements in the South American and African sectors during the ascending phase of solar cycle 24”, Adv. Space Res., 53, No. 9, 1313-1328.
Deminov M.G. and G.F. Deminova, 2016. “Geomagnetic Activity that Corresponds to the Median of the F2-Layer Critical Frequency at Various Latitudes”, Geomagnetism and Aeronomy, 56, No. 5, 572–576. Original Russian Text published in Geomagnetizm i Aeronomiya, 56, No. 5, 606–611.
Dmitriev A.V., C.-M. Huang, P.S. Brahmanandam, L.C. Chang, K.-T. Chen, and L.-C. Tsai, (2013). “Longitudinal variations of positive dayside ionospheric storms related to recurrent geomagnetic storms”, J. Geophys. Res. Space Physics, 118, No. 10, doi:10.1002/jgra.50575, 6806-6822.
Dmitriev A.V., A.V. Suvorova, M.V. Klimenko, V.V. Klimenko, K.G. Ratovsky, R.A. Rakhmatulin, and V.A. Parkhomov, 2017. “Predictable and unpredictable ionospheric disturbances during St. Patrick’s Day magnetic storms of 2013 and 2015 and on 8–9 March 2008”, J. Geophys. Res. Space Physics, 122, 2398–2423, doi:10.1002/2016JA023260.
Dubyagin S., N.Y. Ganushkina, I. Sillanpää, and A. Runov, 2016. “Solar wind-driven variations of electron plasma sheet densities and temperatures beyond geostationary orbit during storm times”, J. Geophys. Res. Space Physics, 121, 8343–8360, doi:10.1002/2016JA022947.
Duff, J.W., H. Dothe, and R.D. Sharma, 2003. “On the rate coefficient of the N(2D)+O2→NO+O reaction in the terrestrial thermosphere”, Geophys. Res. Lett., 30(5), 1259, doi:10.1029/2002GL016720.
Fagundes P.R., F.A. Cardoso, B.G. Fejer, K. Venkatesh, B.A.G. Ribeiro, and V.G. Pillat, 2016. “Positive and negative GPS-TEC ionospheric storm effects during the extreme space weather event of March 2015 over the Brazilian sector”, J. Geophys. Res. Space Physics, 121, 5613–5625, doi:10.1002/2015JA022214.
Fathy I., C. Amory-Mazaudier, A. Fathy, A.M. Mahrous, K. Yumoto, and E. Ghamry, 2014. “Ionospheric disturbance dynamo associated to a coronal hole: Case study of 5–10 April 2010”, J. Geophys. Res. Space Physics, 119, No. 5, doi:10.1002/2013JA019510, 4120-4133.
Figueiredo C.A.O.B., C.M. Wrasse, H. Takahashi, Y. Otsuka, K. Shiokawa, and D. Barros, 2017. “Large-scale traveling ionospheric disturbances observed by GPS dTEC maps over North and South America on Saint Patrick’s Day storm in 2015”, J. Geophys. Res. Space Physics, 122, 4755–4763, doi:10.1002/2016JA023417.
Galav P., S.S. Rao, S. Sharma, G. Gordiyenko, and R. Pandey, 2014. “Ionospheric response to the geomagnetic storm of 15 May 2005 over midlatitudes in the day and night sectors simultaneously”, J. Geophys. Res. Space Physics, 119, No. 6, doi: 10.1002/2013JA019679, 5020-5031.
Gallardo-Lacourt B., Y. Nishimura, L.R. Lyons, J.M. Ruohoniemi, E. Donovan, V. Angelopoulos, K.A. McWilliams, and N. Nishitani, 2014. “Ionospheric flow structures associated with auroral beading at substorm auroral onset”, J. Geophys. Res. Space Physics, 119, No. 11, doi:10.1002/2014JA020298, 9150-9159.
Goldstein J. et al., 2017. “Cross-scale observations of the 2015 St. Patrick’s day storm: THEMIS, Van Allen Probes, and TWINS”, J. Geophys. Res. Space Physics, 122, 368–392, doi:10.1002/2016JA023173.
Greer K.R., T. Immel, and A. Ridley, 2017. “On the variation in the ionospheric response to geomagnetic storms with time of onset”, J. Geophys. Res. Space Physics, 122, 4512–4525, doi:10.1002/2016JA023457.
Guo J., H. Liu, X. Feng, W. Wan, Y. Deng, and C. Liu, 2014. “Constructive interference of large-scale gravity waves excited by interplanetary shock on 29 October 2003: CHAMP observation”, J. Geophys. Res. Space Physics, 119, No. 8, doi:10.1002/2014JA020255, 6846-6851.
Habarulema J.B., Z.T. Katamzi, and E. Yizengaw, 2015. “First observations of poleward large-scale traveling ionospheric disturbances over the African sector during geomagnetic storm conditions”, J. Geophys. Res. Space Physics, 120, No. 8, doi:10.1002/2015JA021066, 6914–6929.
Habarulema J.B., Z.T. Katamzi, E. Yizengaw, Y. Yamazaki, and G. Seemala, 2016. “Simultaneous storm time equatorward and poleward large-scale TIDs on a global scale”, Geophys. Res. Lett., 43, 6678–6686, doi:10.1002/2016GL069740.
Hairston M., W.R. Coley, and R. Stoneback, 2016. “Responses in the polar and equatorial ionosphere to the March 2015 St. Patrick Day storm”, J. Geophys. Res. Space Physics, 121, 11,213–11,234, doi:10.1002/2016JA023165.
Heelis R.A., J.K. Lowell, and R.W. Spiro, 1982. “A model of the high latitude ionosphere convection pattern”, J. Geophys. Res., 87, 6339–6345, doi:10.1029/JA087iA08p06339.
Horvath I. and B.C. Lovell, 2013. “Equatorial westward electrojet impacting equatorial ionization anomaly development during the 6April 2000 superstorm”, J. Geophys. Res. Space Physics, 118, No. 11, doi:10.1002/2013JA019311, 7398-7409.
Horvath I. and B.C. Lovell, 2016. “Polar tongue of ionization (TOI) and associated Joule heating intensification investigated during the magnetically disturbed period of 1–2 October 2001”, J. Geophys. Res. Space Physics, 121, doi:10.1002/2015JA022283.
Huang C.-S., 2015. “Storm-to-storm main phase repeatability of the local time variation of disturbed low-latitude vertical ion drifts”, Geophys. Res. Lett., 42, No. 14, doi:10.1002/2015GL064674, 5694–5701.
Huang C.Y.-Y., Y. Huang, Y.-J. Su, E.K. Sutton, M.R. Hairston, and W.R. Coley. 2016. “Ionosphere-thermosphere (IT) response to solar wind forcing during magnetic storms”, J. Space Weather Space Clim., 6, A4, DOI: 10.1051/swsc/2015041.
Huba J.D. and S. Sazykin, 2014. “Storm time ionosphere and plasmasphere structuring: SAMI3-RCM ‎simulation of the 31 March 2001 geomagnetic storm”, Geophys. Res. Lett., 41, No. 23, doi:10.1002/2014GL062110, 8208-8214.
Hui D., D. Chakrabarty, R. Sekar, G.D. Reeves, A. Yoshikawa, and K. Shiokawa, 2017. “Contribution of storm time substorms to the prompt electric field disturbances in the equatorial ionosphere”, J. Geophys. Res. Space Physics, 122, 5568–5578, doi:10.1002/2016JA023754.
Immel T.J. and A.J. Mannucci, 2013. “Ionospheric redistribution during geomagnetic storms”, J. Geophys. Res. Space Physics, 118, No. 12, doi:10.1002/2013JA018919, 7928-7939.
Jiang G.,W. Wang, J. Xu, J. Yue, A.G. Burns, J. Lei, M.G. Mlynczak, and J.M. Rusell III, 2014. “Responses of the lower thermospheric temperature to the 9 day and 13.5 day oscillations of recurrent geomagnetic activity”, J. Geophys. Res. Space Physics, 119, No. 6, doi:10.1002/2013JA019406, 4841- 4859.
Jiang C. et al., 2017. “Equatorial and low-latitude ionospheric response to the 17–18 March 2015 great storm over Southeast Asia longitude sector”, J. Geophys. Res. Space Physics, 122, 5756–5767, doi:10.1002/2017JA024134.
Joseph O.O., Y. Yamazak, P. Cilliers, P. Baki, C.M. Ngwira, and C. Mito, 2015. “A study on the response of the Equatorial Ionization Anomaly over the East Africa sector during the geomagnetic storm of November 13, 2012”, Adv. Space Res., 55, No. 12, 2863-2872.
Joshi P.P., J.B.H. Baker, J.M. Ruohoniemi, J.J. Makela, D.J. Fisher, B.J. Harding, N.A. Frissell, and E.G. Thomas, 2015. “Observations of storm timemidlatitude ion-neutral coupling using SuperDARN radars and NATION Fabry-Perot interferometers”, J. Geophys. Res. Space Physics, 120, No. 10, doi:10.1002/2015JA021475, 8989–9003.
Joshua B.W., J.O. Adeniyi, I.A. Adimula, O.A. Oladipo, O.A. Olawepo, and S.J. Adebiyi, 2014a. “Ionospheric response to the storm-time disturbance of 29 May, 2010”, Adv. Space Res., 53, No. 2, 219-225.
Joshua B.W., J.O. Adeniyi, B.W. Reinisch, I.A. Adimula, A.O. Olawepo, O.A. Oladipo, and S.J. Adebiyi, 2014b. “The response of the ionosphere over Ilorin to some geomagnetic storms”, Adv. Space Res., 54, No. 11, 2224-2235.
Kakad B., P. Gurram, P.N.B. Tripura Sundari, and A. Bhattacharyya, 2016. “Structuring of intermediate scale equatorial spread F irregularities during intense geomagnetic storm of solar cycle 24”, J. Geophys. Res. Scape Physics, 121, doi:10.1002/2016JA022635.
Kalafatoğlu Eyigüler E.C. and Z. Kaymaz, 2017. “Magnetic and electric field variations during geomagnetically active days over Turkey”, Advances in Space Research, 60, 1921–1948.
Kalita B.R. et al., 2016. “Conjugate hemisphere ionospheric response to the St. Patrick’s Day storms of 2013 and 2015 in the 100°E longitude sector”, J. Geophys. Res. Space Physics, 121, 11,364–11,390, doi:10.1002/2016JA023119.
Kassa T. and B. Damtie, 2017.” Ionospheric irregularities over Bahir Dar, Ethiopia during selected geomagnetic storms”, Advances in Space Research, 60, 121–129.
Klimenko M.V., V.V. Klimenko, F.S. Bessarab, K.G. Ratovsky, I.E. Zakharenkova, I.A. Nosikov, A.E. Stepanov, D.S. Kotova, V.G. Vorobjev, and O.I. Yagodkina, 2015. “Influence of Geomagnetic Storms of September 26–30, 2011, on the Ionosphere and HF Radiowave Propagation. I. Ionospheric Effects”, Geomagnetism and Aeronomy, 55, No. 6, 744–762. Russian Text:Geomagnetizm i Aeronomiya, 55, No. 6, 769–789.
Kotova D.S., M.V. Klimenko, V.V. Klimenko, V.E. Zakharov, K.G. Ratovsky, I.A. Nosikov, and B. Zhao, 2015. “Using IRI and GSM TIP model results as environment for HF radio wave propagation model during the geomagnetic storm occurred on September 26–29, 2011”, Adv. Space Res., 56, No. 9, 2012–2029.
Kotova D.S., M.V. Klimenko, V.V. Klimenko, and V.E. Zakharov, 2017. “Influence of Geomagnetic Storms of September 26–30, 2011, on the Ionosphere and HF Radiowave Propagation. II. Radiowave Propagation”, Geomagnetism and Aeronomy, 57, No. 3, 288–300. Original Russian Text published in Geomagnetizm i Aeronomiya, 57, No. 3, 312–325.
Kuai J., L. Liu, J. Lei, J. Liu, B. Zhao, Y. Chen, H. Le, Y. Wang, and L. Hu, 2017. “Regional differences of the ionospheric response to the July 2012 geomagnetic storm”, J. Geophys. Res. Space Physics, 122, 4654–4668, doi:10.1002/2016JA023844.
Kumar S., A. Kumar, F. Menk, A.K. Maurya, R. Singh, and B. Veenadhari, 2015. “Response of the low-latitude D region ionosphere to extreme space weather event of 14–16 December 2006”, J. Geophys. Res. Space Physics, 120, No. 1, doi:10.1002/2014JA020751, 788-799.
Lei J., W.Wang, A.G. Burns, X. Yue, X. Dou, X. Luan, S.C. Solomon, and Y.C.-M. Liu, 2014. “New aspects of the ionospheric response to the October 2003 superstorms from multiple-satellite observations”, J. Geophys. Res. Space Physics, 119, No. 3, doi:10.1002/2013JA019575, 2298-2317.
Lei J., Q. Zhu, W. Wang, A.G. Burns, B. Zhao, X. Luan, J. Zhong, and X. Dou, 2015. “Response of the topside and bottomside ionosphere at low and middle latitudes to the October 2003 superstorms”, J. Geophys. Res. Space Physics, 120, No. 8, doi:10.1002/2015JA021310, 6974–6986.
Liu X. and A. Ridley, 2015. “A simulation study of the thermosphere mass density response to substorms using GITM”, J. Geophys. Res. Space Physics, 120, No. 9, doi:10.1002/2014JA020962, 7987–8001.
Liu G. and H. Shen, 2017. “A severe negative response of the ionosphere to the intense geomagnetic storm on March 17, 2015 observed at mid- and low-latitude stations in the China zone”, Advances in Space Research, 59, 2301–2312.
Liu J., L. Liu, T. Nakamura, B. Zhao, B. Ning, and A. Yoshikawa, 2014. “A case study of ionospheric storm effects during long-lasting southward IMF Bz-‎driven geomagnetic storm”, J. Geophys. Res. Space Physics, 119, No. 9, doi:10.1002/2014JA020273, 7716-7731.
Liu J., T. Nakamura, L. Liu, W. Wang, N. Balan, T. Nishiyama, M. R. Hairston, and E. G. Thomas, 2015. “Formation of polar ionospheric tongue of ionization during minor geomagnetic disturbed conditions”, J. Geophys. Res. Space Physics, 120, No. 8, doi:10.1002/2015JA021393, 6860–6873.
Liu J., W.Wang, A. Burns, X. Yue, S. Zhang, Y. Zhang, and C. Huang, 2016. “Profiles of ionospheric storm-enhanced density during the 17 March 2015 great storm”, J. Geophys. Res. Space Physics, 121, No. 1, doi:10.1002/2015JA021832, 727–744.
Liu W., L. Xu, C. Xiong, and J. Xu, 2017. “The ionospheric storms in the American sector and their longitudinal dependence at the northern middle latitudes”, Advances in Space Research, 59, 603–613.
López-Montes R., R. Pérez-Enríquez, E.A. Araujo-Pradere, and J.A. López Cruz-Abeyro, 2015. “Fractal and wavelet analysis evaluation of the mid latitude ionospheric disturbances associated with major geomagnetic storms”, Adv. Space Res., 55, No. 2, 586-596.
Lu G., 2017. “Large Scale High-Latitude Ionospheric Electrodynamic Fields and Currents”, Space Sci. Rev., 206, 431–450 DOI 10.1007/s11214-016-0269-9.
Lu G., M.E. Hagan, K. Häusler, E. Doornbos, S. Bruinsma, B.J. Anderson, and H. Korth, 2014. “Global ionospheric and thermospheric response to the 5 April 2010 geomagnetic storm: An integrated data-model investigation”, J. Geophys. Res. Space Physics, 119, No. 12, doi:10.1002/2014JA020555, 10358-10375.
Lyons L.R. et al., 2016. “The 17 March 2013 storm: Synergy of observations related to electric field modes and their ionospheric and magnetospheric Effects”, J. Geophys. Res. Space Physics, 121, 10,880–10,897, doi:10.1002/2016JA023237.
Makarova L.N., A.V. Shirochkov, and V.D. Nikolaeva, 2014. “Dynamics of the auroral Es layer during weak and strong disturbances in the magnetosphere”, Geomagnetism and Aeronomy, 54, No. 6, 746-749. Russian Text: Geomagnetizm i Aeronomiya, 54, No. 6, 763-766.
Makela J.J., B.J. Harding, J.W. Meriwether, R. Mesquita, S. Sanders, A.J. Ridley, M.W. Castellez, M. Ciocca, G.D. Earle, N.A. Frissell, D.L. Hampton, A.J. Gerrard, J. Noto, and C.R. Martinis, 2014. “Storm time response of themidlatitude thermosphere: Observations from a network of Fabry-Perot interferometers”, J. Geophys. Res. Space Physics, 119, No. 8, doi:10.1002/2014JA019832, 6758-6773.
Mao T., L. Sun, L. Hu, Y. Wang, and Z. Wang, 2015. “A case study of ionospheric storm effects in the Chinese sector during the October 2013 geomagnetic storm”, Adv. Space Res., 56, No. 9, 2030–2039.
Martinis C.R., M.J. Mendillo, and J. Aarons, 2005. “Toward a synthesis of equatorial spread F onset and suppression during geomagnetic storms”, J. Geophys. Res. 110, A07306, doi: 10.1029/2003JA010362.
Matamba T.M., J.B. Habarulema, and L.-A. McKinnell, 2015. “Statistical analysis of the ionospheric response during geomagnetic storm conditions over South Africa using ionosonde and GPS data”, SpaceWeather, 13, No. 9, doi:10.1002/2015SW001218, 536–547.
Mengistu Tsidu G. and G. Abraha, 2014. “Moderate geomagnetic storms of January 22–25, 2012 and their influences on the wave components in ionosphere and upper stratosphere-mesosphere regions”, Adv. Space Res., 54, No. 9, 1793-1812.
Mishin V.M., Z. Pu, V.V. Mishin, and S.B. Lunyushkin, 2013. “Short-circuit in the magnetosphere-ionosphere electric circuit”, Geomagnetism and Aeronomy, 53, No. 6, 809-811. Russian Text: Geomagnetizm i Aeronomiya, 53, No. 6, 858-860.
Mishin V.V., V.M. Mishin, Z. Pu, S.B. Lunyushkin, L.A. Sapronova, U. Sukhbaatar, and D.G. Baishev, 2014. “Old tail lobes effect on the solar-wind – Magnetosphere energy transport for the 27 August 2001 substorm”, Adv. Space Res., 54, No. 12, 2540-2548.
Newell P.T., Sotirelis T., Liou K., Meng C.-I., and Rich F.J., 2007. “A nearly universal solar wind–magnetosphere coupling function inferred from 10 magnetospheric state variables”, J. Geophys. Res., Vol. 112, A01206. doi 10.1029/2006JA012015.
Olwendo O.J., C. Cesaroni, Y. Yamazaki, and P. Cilliers, 2017. “Equatorial ionospheric disturbances over the East African sector during the 2015 St. Patrick’s day storm”, Advances in Space Research, 60, 1817–1826.
Panda S.K., S.S. Gedam, G. Rajaram, S. Sripathi, T.K. Pant, and R.M. Das, 2014. “A multi-technique study of the 29–31 October 2003 geomagnetic storm effect on low latitude ionosphere over Indian region with magnetometer, ionosonde, and GPS observations”, Astrophys. Space Sci., 354, No. 2, 267-274.
Patra A.K., P.P. Chaitanya, N. Dashora, M. Sivakandan, and A. Taori, 2016. “Highly localized unique electrodynamics and plasma irregularities linked with the 17 March 2015 severe magnetic storm observed using multitechnique common-volume observations from Gadanki, India”, J. Geophys. Res. Space Physics, 121, 11,518–11,527, doi:10.1002/2016JA023384.
Pedatella N.M., 2016. “Impact of the lower atmosphere on the ionosphere response to a geomagnetic superstorm”, Geophys. Res. Lett., 43, 9383–9389, doi:10.1002/
2016GL070592.
Piersanti M., C. Cesaroni, L. Spogli, and T. Alberti, 2017. “Does TEC react to a sudden impulse as a whole? The 2015 Saint Patrick’s day storm event”, Advances in Space Research, 60, 1807–1816.
Pirog O.M., N.M. Polekh, E.B. Romanova, G.A. Zherebtsov, J. Shi, and X. Wang, 2010. “Study of ionospheric response to magnetic superstorms in the East Asian sector”, J. Atmos. Terr. Phys., 72, No. 2-3, 164–175.
Polekh N.M., N.A. Zolotukhina, E.B. Romanova, S.N. Ponomarchuk, V.I. Kurkin, and A.V. Podlesnyi, 2016. “Ionospheric Effects of Magnetospheric and Thermospheric Disturbances on March 17–19, 2015”, Geomagnetism and Aeronomy, 56, No. 5, 557–571. Original Russian Text published in Geomagnetizm i Aeronomiya, 56, No. 5, 591–605.
Prestes A., V. Klausner, A.O. González, and S.L. Serra, 2017. “Statistical analysis of solar wind parameters and geomagnetic indices during HILDCAA/HILDCAA* occurrences between 1998 and 2007”, Advances in Space Research, 60, 1850–1865.
Ramsingh, S. Sripathi, S. Sreekumar, S. Banola, K. Emperumal, P. Tiwari, and B.S. Kumar, 2015. “Low-latitude ionosphere response to super geomagnetic storm of 17/18 March 2015: Results from a chain of ground-based observations over Indian sector”, J. Geophys. Res. Space Physics, 120, No. 12, doi:10.1002/2015JA021509, 10864–10882.
Ray S., B. Roy, K.S. Paul, S. Goswami, C. Oikonomou, H. Haralambous, B. Chandel, and A. Paul, 2017. “Study of the effect of 17–18 March 2015 geomagnetic storm on the Indian longitudes using GPS and C/NOFS”, J. Geophys. Res. Space Physics, 122, 2551–2563, doi:10.1002/2016JA023127.
Saka O., K. Hayashi, and A.S. Leonovich, 2015. “Ionospheric loop currents and associated ULF oscillations at geosynchronous altitudes during preonset intervals of substorm aurora”, J. Geophys. Res. Space Physics, 120, No. 4, doi:10.1002/2014JA020842, 2460-2468.
Salinas A., S. Toledo-Redondo, E.A. Navarro, J. Fornieles-Callejón, and J.A. Portí, 2016. “Solar storm effects during Saint Patrick’s Days in 2013 and 2015 on the Schumann resonances measured by the ELF station at Sierra Nevada (Spain)”, J. Geophys. Res. Space Physics, 121, 12,234–12,246, doi:10.1002/2016JA023253.
Sau S., V.L. Narayanan, S. Gurubaran, R.N. Ghodpage, and P.T. Patil, 2017. “First observation of interhemispheric asymmetry in the EPBs during the St. Patrick’s Day geomagnetic storm of 2015”, J. Geophys. Res. Space Physics, 122, 6679–6688, doi:10.1002/2017JA024213.
Seba E.B. and M. Nigussie, 2016. “Investigating the effect of geomagnetic storm and equatorial electrojet on equatorial ionospheric irregularity over East African sector”, Advances in Space Research, 58, 1708–1719.
Sheng C., G. Lu, S.C. Solomon, W. Wang, E. Doornbos, L.A. Hunt, and M.G. Mlynczak, 2017. “Thermospheric recovery during the 5 April 2010 geomagnetic storm”, J. Geophys. Res. Space Physics, 122, 4588–4599, doi:10.1002/2016JA023520.
Shore R.M., M.P. Freeman, J.A. Wild, and J.W. Gjerloev, 2017. “A high-resolution model of the external and induced magnetic field at the Earth’s surface in the Northern Hemisphere”, J. Geophys. Res. Space Physics, 122, 2440–2454, doi:10.1002/2016JA023682.
Solomentsev D., K.S. Jacobsen, B. Khattatov, V. Khattatov, Y. Cherniak, and A. Titov, 2014. “Ionosphere data assimilation capabilities for representing the high-latitude geomagnetic storm event in September 2011”, J. Geophys. Res. Space Physics, 119, No. 12, doi:10.1002/2014JA020248, 10581-10594.
Spiro R.W., R.A. Wolf, and B.G. Fejer, 1988. “Penetration of high-latitude-electric field effects to low latitudes during SUNDIAL 1984”, Ann. Geophys. 6, 39–50.
Spogli L., C. Cesaroni, D. Di Mauro et al., 2016. “Formation of ionospheric irregularities over Southeast Asia during the 2015 St. Patrick’s Day storm”, J. Geophys. Res. Space Physics, 121, 12,211–12,233, doi:10.1002/2016JA023222 doi:10.1002/2016JA023222.
Suresh S. and N. Dashora, 2016. “Climatological response of Indian low-latitude ionosphere to geomagnetic storms”, J. Geophys. Res. Space Physics, 121, 4880–4897, doi:10.1002/2015JA022004.
Suvorova A.V., C.-M. Huang, H. Matsumoto, A.V. Dmitriev, V.E. Kunitsyn, E.S. Andreeva, I.A. Nesterov, and L.-C. Tsai, 2014. “Low-latitude ionospheric effects of energetic electrons during a recurrent magnetic storm”, J. Geophys. Res. Space Physics, 119, No. 11, doi:10.1002/2014JA020349, 9283-9302.
Suvorova A.V., C.-M. Huang, L.-C. Tsai, A.V. Dmitriev, and K.G. Ratovskyd, 2015. “Long-duration positive ionospheric storm during the December 2006 geomagnetic storm: Ionizing effect of forbidden electrons”, Adv. Space Res., 56, No. 9, 2001–2011.
Suvorova A.V., C.-M. Huang, A.V. Dmitriev, V.E.Kunitsyn, E.S.Andreeva, I.A. Nesterov, M.V. Klimenko, V.V. Klimenko, and Y.S. Tumanova, 2016. “Effects of ionizing energetic electrons and plasma transport in the ionosphere during the initial phase of the December 2006 magnetic storm”, J. Geophys. Res. Space Physics, 121, 5880–5896, doi:10.1002/2016JA022622.
Thampi S.V., P.R. Shreedevi, R.K. Choudhary, T.K. Pant, D. Chakrabarty, S. Sunda, S. Mukherjee, and A. Bhardwaj, 2016. “Direct observational evidence for disturbance dynamo on the daytime low-latitude ionosphere: A case study based on the 28 June 2013 space weather event”, J. Geophys. Res. Space Physics, 121, 10,064–10,074, doi:10.1002/2016JA023037.
Tsurutani B.T., O.P. Verkhoglyadova, A.J. Mannucci, G.S. Lakhina, and J.D. Huba, 2012. “Extreme changes in the dayside ionosphere during a Carrington-type magnetic storm”, J. Space Weather Space Clim., 2, A05, DOI: 10.1051/swsc/2012004.
Tulasi Ram S., T. Yokoyama, Y. Otsuka, K. Shiokawa, S. Sripathi, B. Veenadhari, R. Heelis, K.K. Ajith, V. S. Gowtam, S. Gurubaran, P. Supnithi, and M. Le Huy, 2016. “Duskside enhancement of equatorial zonal electric field response to convection electric fields during the St. Patrick’s Day storm on 17 March 2015”, J. Geophys. Res. Space Physics, 121, No. 1, doi:10.1002/2015JA021932, 538–548.
Venkatesh K., S. Tulasi Ram, P.R. Fagundes, G.K. Seemala, and I.S. Batista, 2017. “Electrodynamic disturbances in the Brazilian equatorial and low-latitude ionosphere on St. Patrick’s Day storm of 17 March 2015”, J. Geophys. Res. Space Physics, 122, 4553–4570, doi:10.1002/2017JA024009.
Verkhoglyadova O.P., B.T. Tsurutani, A.J. Mannucci, M.G. Mlynczak, L.A. Hunt, L.J. Paxton, and A. Komjathy, 2016. “Solar wind driving of ionosphere-thermosphere responses in three storms near St. Patrick’s Day in 2012, 2013, and 2015”, J. Geophys. Res. Space Physics, 121, 8900–8923, doi:10.1002/2016JA022883.
Victor J., N., A.V. Frank-Kamenetsky, S. Manu, and C. Panneerselvam, 2017. “Variation of atmospheric electric field measured at Vostok, Antarctica, during St. Patrick’s Day storms on 24th solar cycle”, J. Geophys. Res. Space Physics, 122, 6332–6348, doi:10.1002/2017JA024022.
Vorobjev V.G., O.I. Yagodkina, V.L. Zverev, 2016, “Investigation of Isolated Substorms: Generation Conditionsand Characteristics of Different Phases”, Geomagnetism and Aeronomy, 56, No. 6, 682–693. Original Russian Text in Geomagnetizm i Aeronomiya, 56, No. 6, 721–732.
Wang H., K.D. Zhang, X. Wan, and H. Luhr, 2017. “Universal time variation of high-latitude thermospheric disturbance wind in response to a substorm”, J. Geophys. Res. Space Physics, 122, 4638–4653, doi:10.1002/2016JA023630.
Weimer D.R., 2005. “Improved ionospheric electrodynamic models and application to calculating Joule heating rates”, J. Geophys. Res., 110, A05306, doi:10.1029/2004JA010884.
Welling D.T., V.K. Jordanova, A. Glocer, G. Toth, M.W. Liemohn, and D.R. Weimer, 2015. “The two-way relationship between ionospheric outflow and the ring current”, J. Geophys. Res. Space Physics, 120, No. 6, doi:10.1002/2015JA021231, 4338–4353.
Wiltberger M. et al., 2017. “Effects of electrojet turbulence on a magnetosphere-ionosphere simulation of a geomagnetic storm”, J. Geophys. Res. Space Physics, 122, 5008–5027, doi:10.1002/2016JA023700.
Wu Q., B.A. Emery, S.G. Shepherd, J.M. Ruohoniemi, N.A. Frissell, and J. Semeter, 2015. “High-latitude thermospheric wind observations and simulations with SuperDARN data driven NCAR TIEGCM during the December 2006 magnetic storm”, J. Geophys. Res. Space Physics, 120, No. 7, doi:10.1002/2015JA021026, 6021–6028.
Yamazaki Y. and Kosch, 2015. “The equatorial electrojet during geomagnetic storms and substorms”, J. Geophys. Res. Space Physics, 120, No. 3, doi:10.1002/2014JA020773, 2276-2287.
Yenen S.D., T.L. Gulyaeva, F. Arikan, and O. Arikan, 2015. “Association of ionospheric storms and substorms of Global Electron Content with proxy AE index”, Adv. Space Res., 56, No. 7, 1343–1353.
Yuan Z., Y. Xiong, H. Li, S. Huang, Z. Qiao, Z. Wang, M. Zhou, D. Wang, X. Deng, T. Raita, and J. Wang, 2014. “Influence of precipitating energetic ions caused by EMIC waves on the subauroral ‎ionospheric E region during a geomagnetic storm”, J. Geophys. Res. Space Physics, 119, No. 10, doi:10.1002/2014JA020303, 8462-8471.
Yue X., W. Wan, L. Liu, J. Liu, S. Zhang, W.S. Schreiner, B. Zhao, and L. Hu, 2016. “Mapping the conjugate and corotating storm-enhanced density during 17 March 2013 storm through data assimilation”, J. Geophys. Res. Space Physics, 121, 12,202–12,210, doi:10.1002/2016JA023038.
Zakharenkova I. and E. Astafyeva, 2015. “Topside ionospheric irregularities as seen from multisatellite observations”, J. Geophys. Res. Space Physics, 120, No. 1, doi:10.1002/2014JA020330, 807-824.
Zhang S.-R., P.J. Erickson, J.C. Foster, J.M. Holt, A.J. Coster, J.J. Makela, J. Noto, J.W. Meriwether, B.J. Harding, J. Riccobono, and R.B. Kerr, 2015e. “Thermospheric poleward wind surge at midlatitudes during great storm intervals”, Geophys. Res. Lett., 42, No. 13, doi:10.1002/2015GL064836, 5132–5140.
Zhou Y.-L., H. Lühr, C. Xiong, and R.F. Pfaff, 2016. “Ionospheric storm effects and equatorial plasma irregularities during the 17–18 March 2015 event”, J. Geophys. Res. Space Physics, 121, 9146–9163, doi:10.1002/2016JA023122
Zolotukhina N., N. Polekh, V. Kurkin, and E. Romanova, 2015. “Ionospheric effects of solar flares and their associated particle ejections in March 2012”, Adv. Space Res., 55, No. 12, 2851-2862.
Zou S., M.B. Moldwin, A.J. Ridley, M.J. Nicolls, A.J. Coster, E.G. Thomas, and J.M. Ruohoniemi, 2014. “On the generation/decay of the storm-enhanced density plumes: Role of the ‎convection flow and field-aligned ion flow”, J. Geophys. Res. Space Physics, 119, No. 10, doi:10.1002/2014JA020408, 8543-8559.
Zou S., A. Ridley, X. Jia, E. Boyd, M. Nicolls, A. Coster, E. Thomas, and J.M. Ruohoniemi, 2017a. “PFISR observation of intense ion upflow fluxes associated with an SED during the 1 June 2013 geomagnetic storm”, J. Geophys. Res. Space Physics, 122, 2589–2604, doi:10.1002/2016JA023697.
Zou S., D. Ozturk, R. Varney, and A. Reimer, 2017b. “Effects of sudden commencement on the ionosphere: PFISR observations and global MHD simulation”, Geophys. Res. Lett., 44, 3047–3058, doi:10.1002/2017GL072678.


Chapter 5

Allen R.C., S.A. Livi, S.K. Vines, and J. Goldstein, 2016. “Magnetic latitude dependence of oxygen charge states in the global magnetosphere: Insights into solar wind-originating ion injection”, J. Geophys. Res. Space Physics, 121, 9888–9912, doi:10.1002/2016JA022925.
Bakhmetieva N.V., V.D. Vyakhirev, E.E. Kalinina, and G.P. Komrakov, 2017. “Earth’s Lower Ionosphere during Partial Solar Eclipses According to Observations near Nizhny Novgorod”, Geomagnetism and Aeronomy, 57, No. 1, 58–71. Original Russian Text published in Geomagnetizm i Aeronomiya, 57, No. 1, 64–78.
Belcher J.W. and L. Davis, 1971. “Large amplitude Alfvén waves in the interplanetary medium, 2”, J. Geophys. Res., 76, 3534.
Borovsky J.E., M.H. Denton, R.E. Denton, V.K. Jordanova, and J. Krall, (2013). “Estimating the effects of ionospheric plasma on solar wind/magnetosphere coupling via mass loading of dayside reconnection: Ion-plasma-sheet oxygen, plasmaspheric drainage plumes, and the plasma cloak”, J. Geophys. Res. Space Physics, 118, No. 9, doi:10.1002/jgra.50527, 5695-5719.
Brambles O.J., W. Lotko, B. Zhang, J. Ouellette, J. Lyon, and M.Wiltberger, 2013. “The effects of ionospheric outflow on ICME and SIR driven sawtooth events”, J. Geophys. Res. Space Physics, 118, No. 10, doi:10.1002/jgra.50522, 6026-6041.
Chernogor L.F., 2016. “Atmosphere–Ionosphere Response to Solar Eclipse over Kharkiv on March 20, 2015”, Geomagnetism and Aeronomy, 56, No. 5, 592–603. Original Russian Text published in Geomagnetizm i Aeronomiya, 56, No. 5, 627–638.
Chernogor L.F. and K.P. Garmash, 2017. “Magneto-Ionospheric Effects of the Solar Eclipse of March 20, 2015, over Kharkov”, Geomagnetism and Aeronomy, 57, No. 1, 72–83. Original Russian Text published in Geomagnetizm i Aeronomiya, 57, No. 1, 79–90.
Danilov A.D., 2012. “Long-term trends in the upper atmosphere and ionosphere (a review)”, Geomagn. Aeron. (Engl. Transl.), 52, No. 3, 271–291.
Danilov A.D. and A.V. Konstantinova, 2013. “Trends in the F2 layer parameters at the end of the 1990s and the beginning of the 2000”, J. Geophys. Res., 118, No. 12, 5947–5964. doi 10.1002/jgrd.50501.
Danilov A.D. and A.V. Konstantinova, 2014. “Reduction of the atomic oxygen content in the upper atmosphere”, Geomagn. Aeron. (Engl. Transl.), 54, No. 2, 224–229.
Danilov A.D. and A.V. Konstantinova, 2016. “Long-Term Changes in the Relation Between foF2 and hmF2”, Geomagnetism and Aeronomy, 56, No. 5, 577–584. Original Russian Text published in Geomagnetizm i Aeronomiya, 56, No. 5, 612–619.
Feldman W.C., J.R. Asbridge, S.J. Bame, E.E. Fenimore, and J.T. Gosling, 1981. “Origin of solar wind interstream flows: Near Equitorial coronal streamers”, J. Geophys. Res., 86, 5408.
Fisher D.J., J.J. Makela, J.W. Meriwether, R.A. Buriti, Z. Benkhaldoun, M. Kaab, and A. Lagheryeb, 2015. “Climatologies of nighttime thermospheric winds and temperatures from Fabry-Perot interferometer measurements: From solar minimum to solar maximum”, J. Geophys. Res. Space Physics, 120, No. 8, doi:10.1002/2015JA021170, 6679–6693.
Fytterer T., S. Bender, U. Berger, H. Nieder, M. Sinnhuber, and J.M. Wissing, 2016. “Model studies of short-term variations induced in trace gases by particle precipitation in the mesosphere and lower thermosphere”, J. Geophys. Res. Space Physics, 121, 10,431–10,447, doi:10.1002/2015JA022291.
Grandin M., A.T. Aikio, A. Kozlovsky, T. Ulich, and T. Raita, 2015. “Effects of solar wind high-speed streams on the high-latitude ionosphere: Superposed epoch study”, J. Geophys. Res. Space Physics, 120, No. 12, doi:10.1002/2015JA021785, 10669–10687.
Hajra R., B.T. Tsurutani, C.G.M. Brum, and E. Echer, 2017. “High-speed solar wind stream effects on the topside ionosphere over Arecibo: A case study during solar minimum”, Geophys. Res. Lett., 44, 7607–7617, doi:10.1002/2017GL073805.
Herrera G.V., 2016. “Mexican forest fires and their decadal variations”, Advances in Space Research, 58, 2104–2115.
Hill T.W., A.J. Dessler, and R.A. Wolf, 1976. “Mercury and Mars: the role of ionospheric conductivity in the acceleration of magnetospheric particles”, Geophys. Res. Lett., 3 (8), 429–432.
Huba J.D. and D. Drob, 2017. “SAMI3 prediction of the impact of the 21 August 2017 total solar eclipse on the ionosphere/plasmasphere system”, Geophys. Res. Lett.,

44, 5928–5935, doi:10.1002/2017GL073549.


Klimenko M. and L. Liu, 2015. “Preface: Advances in equatorial, low- and mid-latitude mesosphere, thermosphere and ionosphere studies”, Adv. Space Res., 56, No. 9, 1805–1805.
Krauss S., M. Temmer, A. Veronig, O. Baur, and H. Lammer, 2015. “Thermospheric and geomagnetic responses to interplanetary coronalmass ejections observed by ACE and GRACE: Statistical results”, J. Geophys. Res. Space Physics, 120, No. 10, doi:10.1 002/2015JA021702, 8848–8860.
Krieger A.S., A.F. Timothy, and E.C. Roelof, 1973. “A coronal hole and its identification as the source of a high velocity solar wind stream”, Sol. Phys., 29, 505.
Kumar K.V., A.K. Maurya, S. Kumar, and R. Singh, 2016. “22 July 2009 total solar eclipse induced gravity waves in ionosphere as inferred from GPS observations over EIA”, Advances in Space Research, 58, 1755–1762.
Le H., L. Liu, Z. Ren, Y. Chen, H. Zhang, and W. Wan, 2016. “A modeling study of global ionospheric and thermospheric responses to extreme solar flare”, J. Geophys. Res. Space Physics, 121, No. 1, doi:10.1002/2015JA021930, 832–840.
Lee Y.-S., S. Kirkwood, Y.-S. Kwak, K.-C. Kim, and G.G. Shepherd, 2014. “Polar summer mesospheric extreme horizontal drift speeds during interplanetary corotating interaction regions (CIRs) and high-speed solar wind streams: Coupling between the solar wind and the mesosphere”, J. Geophys. Res. Space Physics, 119, No. 5, doi:10.1002 /2014JA019790, 3883-3894.
Liu J., X. Zhang, V. Novikov, and X. Shen, 2016. “Variations of ionospheric plasma at different altitudes before the 2005 Sumatra Indonesia Ms 7.2 earthquake”, J. Geophys. Res. Space Physics, 121, 9179–9187, doi:10.1002/2016JA022758.
Mailyan B.G., M.S. Briggs, E.S. Cramer, G. Fitzpatrick, O.J. Roberts, M. Stanbro, V. Connaughton, S. McBreen, P.N. Bhat, and J.R. Dwyer, 2016. “The spectroscopy of individual terrestrial gamma-ray flashes: Constraining the source properties”, J. Geophys. Res. Space Physics, 121, 11,346–11,363, doi:10.1002/2016JA022702.
Mao T., L. Sun, Y. Wang, C. She, B. Xiong, and L. Hu, 2017. “Response of the equatorial and low-latitude ionosphere over the West Pacific Ocean Sector to an X1.2 solar flare on 15 May 2013”, Advances in Space Research, 60, 1029–1038.


Maurya A.K., K. Venkatesham, P. Tiwari, K. Vijaykumar, R. Singh, A.K. Singh, and D.S. Ramesh, 2016. “The 25 April 2015 Nepal Earthquake: Investigation of precursor in VLF subionospheric signal”, J. Geophys. Res. Space Physics, 121, 10,403–10,416, doi:10.1002/2016JA022721.
Mendaza T., J.J. Blanco-Ávalos, and J. Martín-Torres, 2017. “Interplanetary Coronal Mass Ejection effects on thermospheric density as inferred from International Space Station orbital data”, Advances in Space Research, 60, 2233–2251.
Mikhailova G.A., Yu.M. Mikhailov, and O.V. Kapustina, 2016. “The December 26, 2004, Tsunami on Sumatra Island as a Source of Internal Gravity Waves in the Earth’s Atmosphere”, Geomagnetism and Aeronomy, 56, No. 5, 634–640. Original Russian text published in Geomagnetizm i Aeronomiya, 56, No. 5, 670–676.
Mustajab F. and Badruddin, 2017. “Passage of the high-speed solar wind streams, their plasma/field properties, and resulting geomagnetic disturbances”, Advances in Space Research, 60, 144–152.


Nikolaeva N., Y. Yermolaev, and I. Lodkina, 2015. “Predicted dependence of the cross polar cap potential saturation on the type of solar wind stream”, Adv. Space Res., 56, No. 7, 1366–1373.
Ogunjobi O., V. Sivakumar, and W.T. Sivla, 2014. “A superposed epoch study of the effects of solar wind stream interface events on the upper mesospheric and lower thermospheric temperature”, Adv. Space Res., 54, No. 9, 1732-1742.
Richardson I.G., 2006.”The formation of CIRs at stream-stream interfaces and resultant geomagnetic activity” in Recurrent Magnetic Storms: Corotating Solar Wind Streams, ed. B.T., Tsurutani et al., A.G.U. Geophysical Monograph, 167, 45.
Richardson I.G., and H.V. Cane, 2003. “Interplanetary coronal mass ejections in the near-Earth solar wind during 1996–2002”, J. Geophys. Res., 108(A4), 1156, doi:10.1029/ 2002JA009817.
Richardson I.G. and H.V. Cane, 2010. “Near-Earth interplanetary coronal mass ejections during solar cycle 23 (1996–2009): Catalog and summary of properties”, Sol. Phys., 264(1), 189–237.
Richardson I.G. and H.V. Cane, 2012a. “Near-earth solar wind flows and related geomagnetic activity during more than four solar cycles (1963–2011)”, J. Space Weather Space Clim., 2, A02, DOI: 10.1051/swsc/2012003.
Richardson I.G. and H.V. Cane, 2012b. “Solar wind drivers of geomagnetic storms during more than four solar cycles”, J. Space Weather Space Clim., 2, A01, DOI: 10.1051/swsc/ 2012001.
Richardson I.G., E.W. Cliver, and H.V. Cane, 2000. “Sources of geomagnetic activity over the solar cycle: Relative importance of CMEs, high-speed streams, and slow solar wind”, J. Geophys. Res., 105, 18203.
Richardson I.G., E.W. Cliver, and H.V. Cane, 2001.”Sources of geomagnetic storms for solar minimum and maximum conditions during 1972–2000”, Geophys. Res. Lett., 28, 2569.
Richardson I.G., H.V. Cane, and E.W. Cliver, 2002. “Sources of geomagnetic activity during nearly three solar cycles (1972–2000)”, J. Geophys. Res., 107, DOI: 10.1029/2001JA 000504.
Rodríguez-Zuluaga J., S.M. Radicella, B. Nava, C. Amory-Mazaudier, H. Mora-Páez, and K. Alazo-Cuartas, 2016. “Distinct responses of the low-latitude ionosphere to CME and HSSWS: The role of the IMF Bz oscillation frequency”, J. Geophys. Res. Space Physics, 121, 11,528–11,548, doi:10.1002/2016JA022539.
Romero-Hernandez E., J.A. Gonzalez-Esparza, M. Rodriguez-Martinez, M.A. Sergeeva, E. Aguilar-Rodriguez, J.C. Mejia-Ambriz, and V. De la Luz, 2017. “Study of ionospheric disturbances over Mexico associated with transient space weather events”, Advances in Space Research, 60, 1838–1849.
Rout D., D. Chakrabarty, P. Janardhan, R. Sekar, V. Maniya, and K. Pandey, 2017. “Solar wind flow angle and geoeffectiveness of corotating interaction regions: First results”, Geophys. Res. Lett., 44, 4532–4539, doi:10.1002/2017GL073038.
Ruan H., J. Du, M. Cook, W. Wang, J. Yue, Q. Gan, X. Dou, and J. Lei, 2015. “A numerical study of the effects of migrating tides on thermosphere midnight density maximum”, J. Geophys. Res. Space Physics, 120, No. 8, doi:10.1002/2015JA021190, 6766–6778.
Siscoe G., 2011. “Aspects of global coherence of magnetospheric behavior”, J. Atmos. Sol.-Terr. Phys. 73, 402–419.
Siscoe G., Rader J., and Ridley A.J., 2004. “Transpolar potential saturation models compared”. J. Geophys. Res. 109, A09203. http://dx.doi.org/10.1029/2003JA010318.
Siscoe G.L., Erickson G.M., Sonnerup B.U.O., Maynard N.C., Schoendorf J.A., Siebert K.D., Weimer D.R., White W.W., and Wilson G.R., 2002a. “Hill model of transpolar potential saturation: comparisons with MHD simulations”, J. Geophys. Res. 107 (A6), 1075. http://dx.doi.org/10.1029/2001JA000109.
Siscoe G.L., Crooker N.U., and Siebert K.D., 2002b. “Transpolar potential saturation: roles of region 1 current system and solar wind ram pressure”, J. Geophys. Res. 107 (A10), 1321. http://dx.doi.org/10.1029/2001JA009176.
Sripathi S., R. Singh, S. Banola, D. Singh, and S. Sathish, 2016. “The response of the equatorial ionosphere to fast stream solar coronal holes during 2008 deep solar minimum over Indian region”, J. Geophys. Res. Space Physics, 121, No. 1, doi:10.1002/2015 JA021534, 841–853.
Tacza J.C., J.-P. Raulin, E.L. Macotela, E.O. Norabuena, and G. Fernandez, 2016. “Atmospheric electric field variations and lower ionosphere disturbance during the total solar eclipse of 2010 July 11”, Advances in Space Research, 58, 2052–2056.
Takeda M., 2016. “Long-term variation of Ampère force by geomagnetic Sq currents and thermospheric pressure difference”, J. Geophys. Res. Space Physics, 121, 11,407–11,412, doi:10.1002/2016JA022845.
Verkhoglyadova O.P., A.J. Mannucci, B.T. Tsurutani, M.G. Mlynczak, L.A. Hunt, R.J. Redmon, and J.C. Green, 2015. “Localized thermosphere ionization events during the high-speed stream interval of 29 April to 5 May 2011”, J. Geophys. Res. Space Physics, 120, No. 1, doi:10.1002/2014JA020535, 675-696.
Yi W., I.M. Reid, X. Xue, J.P. Younger, A.J. Spargo, D.J. Murphy, T. Chen, and X. Dou, 2017. “First observation of mesosphere response to the solar wind high-speed streams”, J. Geophys. Res. Space Physics, 122, 9080–9088, doi:10.1002/2017JA024446.
Yu S., Z. Xiao, E. Aa, Y. Hao, and D. Zhang, 2016. “Observational investigation of the possible correlation between medium-scale TIDs and mid-latitude spread F”, Advances in Space Research, 58, 349–357.
Yuan T., Y. Zhang, X. Cai, C.-Y. She, and L.J. Paxton, 2015. “Impacts of CME-induced geomagnetic storms on the midlatitude mesosphere and lower thermosphere observed by a sodium lidar and TIMED/GUVI”, Geophys. Res. Lett., 42, No. 18, doi:10.1002/2015 GL064860, 7295–7302.
Zaourar N., C. Amory-Mazaudier, and R. Fleury, 2017. “Hemispheric asymmetries in the ionosphere response observed during the high-speed solar wind streams of the 24–28 August 2010”, Advances in Space Research,

59, 2229–2247.


Zawedde A.E., H. Nesse Tyssøy, R. Hibbins, P.J. Espy, L.-K.G. Ødegaard, M.I. Sandanger, and J. Stadsnes, 2016. “The impact of energetic electron precipitation on mesospheric hydroxyl during a year of solar minimum”, J. Geophys. Res. Space Phys., 121, 5914–5929, doi:10.1002/2016JA022371.
Zhang S.-R., J.M. Holt, P.J. Erickson, L.P. Goncharenko, M.J. Nicolls, M. McCready, and J. Kelly, 2016. “Ionospheric ion temperature climate and upper atmospheric long-term cooling”, J. Geophys. Res. Space Physics, 121, 8951–8968, doi:10.1002/2016JA022971.
Zossi de Artigas M., E.M. Zotto, G.A. Mansilla, and P. Fernandez de Campra, “Effects of energetic particles precipitation on stratospheric ozone in the Southern Hemisphere”, Advances in Space Research, 58, 2080–2089.
Zurbuchen T.H., and I.G. Richardson, 2006. “In-situ solar wind and magnetic field signatures of interplanetary coronal mass ejections”, Space Sci. Rev., 123, 31–34.

Chapter 6

Alcay S., 2017. “Anamolous Ionospheric TEC Variations Prior to the Indonesian Earthquake (M 7.1) of November 15, 2014”, Geomagnetism and Aeronomy,

57, No. 3, 301–307. Published in Russian in Geomagnetizm i Aeronomiya,

57, No. 3, 326–332.
Aswathy R.P. and G. Manju, 2017. “Gravity wave control on ESF day-to-day variability: An empirical approach”, J. Geophys. Res. Space Physics, 122, 67916798, doi:10.1002/2017JA023983.
Bagiya M.S., A.S. Sunil, P.S. Sunil, K.M. Sreejith, L. Rolland, and D.S. Ramesh, 2017a. “Efficiency of coseismic ionospheric perturbations in identifying crustal deformation pattern: Case study based on Mw 7.3 May Nepal 2015 earthquake”, J. Geophys. Res. Space Physics, 122, 68496857, doi:10.1002/2017JA024050.
Bagiya M.S., E.A. Kherani, P.S. Sunil, A.S. Sunil, S. Sunda, and D.S. Ramesh, 2017b. “Origin of the ahead of tsunami traveling ionospheric disturbances during Sumatra tsunami and offshore forecasting”, J. Geophys. Res. Space Physics, 122, 7742–7749, doi:10.1002/2017JA023971.
Bardhan A., M.S. Khurana, B.M. Bahal, M. Aggarwal, and D.K. Sharma, 2017. “Ion density and temperature variations at altitude of 500 km during moderate seismic activity”. Advances in Space Research, 59, 1023–1032.
Bellaoui M., A. Hassini, K. Bouchouicha, 2017. “Pre-seismic anomalies in remotely sensed land surface temperature measurements: The case study of 2003 Boumerdes earthquake”, Advances in Space Research, 59, 2645–2657.
Bellaoui M., A. Hassini, and K. Bouchouicha, 2017. “Pre-seismic anomalies in remotely sensed land surface temperature measurements: The case study of 2003 Boumerdes earthquake”, Advances in Space Research,

59, 2645–2657.


Berngardt O.I., N.P. Perevalova, A.V. Podlesnyi, V.I. Kurkin, and G.A. Zherebtsov, 2017. “Vertical midscale ionospheric disturbances caused by surface seismic waves based on Irkutsk chirp ionosonde data in 2011–2016”, J. Geophys. Res. Space Physics,

122, 4736–4754, doi:10.1002/2016JA023511.


Blaes P.R., R.A. Marshall, and U.S. Inan, 2016. “Global occurrence rate of elves and ionospheric heating due to cloud-to-ground lightning”, J. Geophys. Res. Space Physics, 121, No. 1, doi:10.1002/2015JA021916, 699–712.
Bolaji O.S. et al., 2016. “Solar quiet current response in the African sector due to a 2009 sudden stratospheric warming event”, J. Geophys. Res. Space Physics, 121, 8055–8065, doi:10.1002/2016JA022857.
Braginskiy S.I., 1964a. “Kinematic models of the Earth’s hydromagnetic dynamo”, Geomagnetism and Aeronomy, 4, No. 4, 572-583, in Russian. English edition published by American Geophysical Union.
Braginskiy S.I., 1964b. “Magnetohydrodynamics of the Earth’s core”, Geomagnetism and Aeronomy, 4, No. 5, 698-712 (1964b), in Russian. English edition published by American Geophysical Union.
Bychkov V.V., L.P. Korsunova, S.E. Smirnov, and V.V. Hegai, 2017. “Atmospheric Anomalies and Anomalies of Electricity in the Near-Surface Atmosphere before the Kamchatka Earthquake of January 30, 2016, based on the Data from the Paratunka Observatory”, Geomagnetism and Aeronomy, 57, No. 4, 491–499. Original Russian Text published in Geomagnetizm i Aeronomiya, 57, No. 4, 532–540.
Chakraborty S., S. Sasmal, T. Basak, S. Ghosh, S. Palit, S.K. Chakrabarti, and S. Ray, 2017. “Numerical modeling of possible lower ionospheric anomalies associated with Nepal earthquake in May, 2015”, Advances in Space Research, 60, 1787–1796.
Chang X., B. Zou, J. Guo, G. Zhu, W. Li, and W. Li, 2017. “One sliding PCA method to detect ionospheric anomalies before strong Earthquakes: Cases study of Qinghai, Honshu, Hotan and Nepal earthquakes”, Advances in Space Research, 59, 2058–2070.
Chen G., C. Wu, S. Zhang, B. Ning, X. Huang, D. Zhong, H. Qi, J. Wang, and L. Huang, 2016. “Midlatitude ionospheric responses to the 2013 SSW under high solar activity”, J. Geophys. Res. Space Physics, 121, No. 1, doi:10.1002/2015JA021980, 790–803.
Chen P., Y. Yao, W. Yao, 2017. “On the coseismic ionospheric disturbances after the Nepal Mw7.8 earthquake on April 25, 2015 using GNSS observations”, Advances in Space Research, 59, 103–113.
Chou M.Y., C.C.H. Lin, J. Yue, H.F. Tsai, Y.Y. Sun, J.Y. Liu, and C.H. Chen, 2017a. “Concentric traveling ionosphere disturbances triggered by Super Typhoon Meranti (2016)”, Geophys. Res. Lett., 44, 1219–1226, doi:10.1002/2016GL072205.
Chou M.Y., C.H. Lin, J. Yue, L.C. Chang, H.F. Tsai, and C.H. Chen, 2017b. “Medium-scale traveling ionospheric disturbances triggered by Super Typhoon Nepartak (2016)”, Geophys. Res. Lett., 44, 7569–7577, doi:10.1002/2017GL073961.
Clare A., T. Lin, and G. Lachapelle, 2017. “Effect of GNSS receiver carrier phase tracking loops on earthquake monitoring performance”, Advances in Space Research, 59, 2740–2749.
Cnossen I., 2017. “The Impact of Century-Scale Changes in the Core Magnetic Field on External Magnetic Field Contributions”, Space Sci. Rev., 206, 259–280, DOI 10.1007/s11214-016-0276-x.
Coleman L.M. and J.R. Dwyer, 2006. “Propagation speed of runaway electron avalanches”, Geophys. Res. Lett., 33, L11810, doi:10.1029/2006GL025863.
Conte J.F., J.L. Chau, G. Stober, N. Pedatella, A. Maute, P. Hoffmann, D. Janches, D. Fritts, and D.J. Murphy, 2017. “Climatology of semidiurnal lunar and solar tides at middle and high latitudes: Interhemispheric comparison”, J. Geophys. Res. Space Physics, 122, 7750–7760, doi:10.1002/2017JA024396.
Cox A., G.B. Dalrymple, and R.R. Doedl, 1967. “Reversals of the earth’s magnetic field”, Sci. Am., 216, No. 2, 44-54.
Cramer E.S., J.R. Dwyer, and H.K. Rassoul, 2016. “Magnetic field modification to the relativistic runaway electron avalanche length”, J. Geophys. Res. Space Physics, 121, 11,261–11,270, doi:10.1002/2016JA022891.
Dobrovolsky I.P., S.I. Zubkov, and V.I. Miachkin, 1979. “Estimation of the size of earthquake preparation zones”, Pure Appl. Geophys. (PAGEOPH), 117(5), 1025–1044, doi:10.1007/BF00876083.
Dwyer J.R., N. Liu, J. Eric Grove, H. Rassoul, and D.M. Smith, 2017. “Characterizing the source properties of terrestrial gamma ray flashes”, J. Geophys. Res. Space Physics, 122, 8915–8932, doi:10.1002/2017JA024141.
Fedorov E., N. Mazur, V. Pilipenko, and L. Baddeley, 2016. “Modeling the high-latitude ground response to the excitation of the ionospheric MHD modes by atmospheric electric discharge”, J. Geophys. Res. Space Physics, 121, 11,282–11,301, doi:10.1002/2016JA023354.
Fejer B.G., M. Blanc, and A.D. Richmond, 2017. “Post-Storm Middle and Low-Latitude Ionospheric Electric Fields Effects”, Space Sci. Rev., 206, 407–429, DOI 10.1007/s11214-016-0320-x.
Fernández de Campra P., M. Zossi de Artigas, and H. Valdecantos, 2016. “Long term trends in stratospheric temperature using NCEP/NCAR data”, Advances in Space Research, 58, 2076–2079.
Finlay C.C., V. Lesur, E. Thébault, F. Vervelidou, A. Morschhauser, and R. Shore, 2017. “Challenges Handling Magnetospheric and Ionospheric Signals in Internal Geomagnetic Field Modelling”, Space Sci. Rev., 206, 157–189, DOI 10.1007/s11214-016-0285-9.
Friis-Christensen E., C.C. Finlay, M. Hesse, and K.M. Laundal, 2017. “Magnetic Field Perturbations from Currents in the Dark Polar Regions During Quiet Geomagnetic Conditions”, Space Sci. Rev., 206, 281–297, DOI 10.1007/s11214-017-0332-1.
Gjesteland T., N. Østgaard, P. Bitzer, and H.J. Christian, 2017. “On the timing between terrestrial gamma ray flashes, radio atmospherics, and optical lightning emission”, J. Geophys. Res. Space Physics, 122, 7734–7741, doi:10.1002/2017JA024285.
Grawe M.A. and J.J. Makela, 2017. “Observation of tsunami-generated ionospheric signatures over Hawaii caused by the 16 September 2015 Illapel earthquake”, J. Geophys. Res. Space Physics, 122, 1128–1136, doi:10.1002/2016JA023228.
Gulyaeva T.L., F. Arikan, and I. Stanislawska, 2017a. “Persistent long-term (1944–2015) ionosphere-magnetosphere associations at the area of intense seismic activity and beyond”, Advances in Space Research, 59, 1033–1040.
Gulyaeva T.L., F. Arikan, and I. Stanislawska, 2017b. “Earthquake aftereffects in the Equatorial Ionization Anomaly region under geomagnetic quiet and storm conditions”, Advances in Space Research, 60, 406–418.
Gupta S. and A.K. Upadhayaya, 2017a. “Morphology of ionospheric F2 region variability associated with sudden stratospheric warmings”, J. Geophys. Res. Space Physics, 122, 7798–7826, doi:10.1002/2017JA024059.
Gupta S. and A.K. Upadhayaya, 2017b. “Preearthquake anomalous ionospheric signatures observed at low-mid latitude Indian station, Delhi, during the year 2015 to early 2016: Preliminary results”, J. Geophys. Res. Space Physics, 122, 8694–8719, doi:10.1002/ 2017JA024192.
He L. and K. Heki, 2017. “Ionospheric anomalies immediately before Mw7.0–8.0 earthquakes”, J. Geophys. Res. Space Physics, 122, 8659–8678, doi:10.1002/2017JA024012.
Herrera G.V., 2016. “Mexican forest fires and their decadal variations”, Advances in Space Research, 58, 2104–2115.
Ihaddadene M.A. and S. Celestin, 2017. “Determination of sprite streamers altitude based on N2 spectroscopic analysis”, J. Geophys. Res. Space Physics, 122, 1000–1014, doi:10.1002/ 2016JA023111.
Iwata T. and K. Umeno, 2016. “Correlation analysis for preseismic total electron content anomalies around the 2011 Tohoku-Oki earthquake”, J. Geophys. Res. Space Physics, 121, 8969–8984, doi:10.1002/2016JA023036.
Jin S., R. Jin, and D. Li, 2017. “GPS detection of ionospheric Rayleigh wave and its source following the 2012 Haida Gwaii earthquake”, J. Geophys. Res. Space Physics, 122, 1360–1372, doi:10.1002/2016JA023727.
Kelley M.C., W.E. Swartz, and K. Heki, 2017. “Apparent ionospheric total electron content variations prior to major earthquakes due to electric fields created by tectonic stresses”, J. Geophys. Res. Space Physics, 122, 6689–6695, doi:10.1002/2016JA023601.
Korte M. and R. Muscheler, 2012. “Centennial to millennial geomagnetic field variations”, J. Space Weather Space Clim., 2, A08, DOI: 10.1051/swsc/2012006.
Kotovsky D.A. and R.C. Moore, 2017. “Modeling long recovery early events (LOREs) produced by lightning-induced ionization of the nighttime upper mesosphere”, J. Geophys. Res. Space Physics, 122, 7761–7780, doi:10.1002/2017JA023996.
Kumar S., S. NaitAmor, O. Chanrion, and T. Neubert, 2017a. “Perturbations to the lower ionosphere by tropical cyclone Evan in the South Pacific Region”, J. Geophys. Res. Space Physics, 122, 8720–8732, doi:10.1002/2017JA024023.
Kumar S., W. Chen, M. Chen, Z. Liu, and R.P. Singh, 2017b. “Thunderstorm-/lightning-induced ionospheric perturbation: An observation from equatorial and low-latitude stations around Hong Kong”, J. Geophys. Res. Space Physics, 122, 9032–9044, doi:10.1002/2017JA023914.
Laundal K.M., I. Cnossen, S.E. Milan, S.E. Haaland, J. Coxon, N.M. Pedatella, M. Förster, and J.P. Reistad, 2017. “North–South Asymmetries in Earth’s Magnetic Field Effects on High-Latitude Geospace”, Space Sci. Rev., 206, 225–257, DOI 10.1007/s11214-016-0273-0.
Lindsey E., R. Natsuaki, X. Xu, M. Shimada, H. Hashimoto, D. Melgar, and D. Sandwell, 2015. “Line of sight deformation from ALOS-2 interferometry: Mw 7.8 Gorkha earthquake and Mw 7.3 aftershock”, Geophys. Res. Lett., 42, 6655–6661. http://dx.doi.org/10.1002/ 2015GL 065385.
Liu H., F. Ding, B. Zhao, J. Li, L. Hu, W. Wan, and B. Ning, 2017. “Ionospheric response following the Mw 7.8 Gorkha earthquake on 25 April 2015”, J. Geophys. Res. Space Physics, 122, 6495–6507, doi:10.1002/2016JA023079.
Mailyan B.G., M.S. Briggs, E.S. Cramer, G. Fitzpatrick, O.J. Roberts, M. Stanbro, V. Connaughton, S. McBreen, P.N. Bhat, and J.R. Dwyer, 2016. “The spectroscopy of individual terrestrial gamma-ray flashes: Constraining the source properties”, J. Geophys. Res. Space Physics, 121, 11,346–11,363, doi:10.1002/2016JA022702.
Mangla B, D.K. Sharma, and A Rajput , 2017, “Ion density variation at upper ionosphere during thunderstorm”, Advances in Space Research, 59, 1189–1199.
Maurya A.K., K. Venkatesham, P. Tiwari, K. Vijaykumar, R. Singh, A.K. Singh, and D.S. Ramesh, 2016. “The 25 April 2015 Nepal Earthquake: Investigation of precursor in VLF subionospheric signal”, J. Geophys. Res. Space Physics, 121, 10,403–10,416, doi:10.1002 /2016JA022721.
Moro J., C.M. Denardini, L.C.A. Resende, S.S. Chen, and N.J. Schuch, 2016b “Equatorial E region electric fields at the dip equator: 2. Seasonal variabilities and effects over Brazil due to the secular variation of the magnetic equator”, J. Geophys. Res. Space Physics, 121, 10,231–10,240, doi:10.1002/2016JA022753.
Nina A., M. Radovanović, B. Milovanović, A. Kovačević, J. Bajčetić, and L.Č Popovic, 2017. “Low ionospheric reactions on tropical depressions prior hurricanes”, Advances in Space Research, 60, 1866–1877.
Oikonomou C., H. Haralambous, and B. Muslim, 2017. “Investigation of ionospheric precursors related to deep and intermediate earthquakes based on spectral and statistical analysis”, Advances in Space Research, 59, 587–602.
Olsen N. and C. Stolle, 2017. “Magnetic Signatures of Ionospheric and Magnetospheric Current Systems During Geomagnetic Quiet Conditions An Overview”, Space Sci. Rev., 206, 5–25, DOI 10.1007/s11214-016-0279-7.
Østgaard N., T. Gjesteland, R.S. Hansen, A.B. Collier, and B. Carlson, 2012. “The true fluence distribution of terrestrial gamma flashes at satellite altitude”, J. Geophys. Res., 117, A03327, doi:10.1029/2011JA017365.
Pal S., Y. Hobara, S.K. Chakrabarti, and P.W. Schnoor, 2017. “Effects of the major sudden stratospheric warming event of 2009 on the subionospheric very low frequency/low frequency radio signals”, J. Geophys. Res. Space Physics, 122, 7555–7566, doi:10.1002/2016JA023813.
Paulino A.R., L.M. Lima, S.L. Almeida, P.P. Batista, I.S. Batista, I. Paulino, H. Takahashi, and C.M. Wrasse, 2017. “Lunar tides in total electron content over Brazil”, J. Geophys. Res. Space Physics, 122, 7519–7529, doi:10.1002/2017JA024052.
Pedatella N.M. and A. Maute, 2015. “Impact of the semidiurnal lunar tide on the midlatitude thermospheric wind and ionosphere during sudden stratosphere warmings”, J. Geophys. Res. Space Physics, 120, No. 12, doi:10.1002/2015JA021986, 10740–10753.
Pedatella N.M., A.D. Richmond, A. Maute, and H.-L. Liu, 2016a. “Impact of semidiurnal tidal variability during SSWs on the mean state of the ionosphere and thermosphere”, J. Geophys. Res. Space Physics, 121, 8077–8088, doi:10.1002/2016JA022910.
Pedatella N.M., T.-W. Fang, H. Jin, F. Sassi, H. Schmidt, J.L. Chau, T.A. Siddiqui, and L. Goncharenko, 2016b. “Multimodel comparison of the ionosphere variability during the 2009 sudden stratosphere warming”, J. Geophys. Res. Space Physics, 121, 7204–7225, doi:10.1002/2016JA022859.
Pundhir D., B Singh, O.P. Singh, S.K. Gupta, S.P. Karia, and K.N. Pathak, 2017. “Study of ionospheric precursors using GPS and GIM-TEC data related to earthquakes occurred on 16 April and 24 September, 2013 in Pakistan region”, Advances in Space Research, 60, 1978–1987.
Reshetnyak M.Yu. and V.E. Pavlov, 2016. “Evolution of the Dipole Geomagnetic Field. Observations and Models”, Geomagnetism and Aeronomy, 56, No. 1, 110–124. Russian Text: Geomagnetizm i Aeronomiya, 56, No. 1, 117–132.
Robledo-Martinez A., A. Garcia-Villarreal, and H. Sobral, 2017. “Comparison between low-pressure laboratory discharges and atmospheric sprites”, J. Geophys. Res. Space Physics, 122, 948–962, doi:10.1002/2016JA023519.
Ruzhin Yu.Ya., V.E. Chertoprud, and G.S. Ivanov-Kholodnyi, 2016. “Diurnal Variation in the Effect of the Weekend in Global Seismic Activity”, Geomagnetism and Aeronomy, 56, No. 5, 585–591. Original Russian Text: published in Geomagnetizm i Aeronomiya, 56, No. 5, 620–626.
Sharifi M.A. and A. Shahamat, 2017. “Detection of co-seismic earthquake gravity field signals using GRACE-like mission simulations”, Advances in Space Research, 59, 2623–2635.
Shen X., Z. Zhima, S. Zhao, G. Qian, Q. Ye, Y. Ruzhin, 2017. “VLF radio wave anomalies associated with the 2010 Ms 7.1 Yushu earthquake”, Advances in Space Research, 59, 2636–2644.
Shults K., E. Astafyeva, and S. Adourian, 2016 “Ionospheric detection and localization of volcano eruptions on the example of the April 2015 Calbuco events”, J. Geophys. Res. Space Physics, 121, 10,303–10,315, doi:10.1002/2016JA023382.
Song Q., F. Ding, X. Zhang, and T. Mao, 2017. “GPS detection of the ionospheric disturbances over China due to impacts of Typhoons Rammasum and Matmo”, J. Geophys. Res. Space Physics, 122, 1055–1063, doi:10.1002/2016JA023449.
Sorokin V.M. and A.K. Yashchenko, 2016. “Anomalous Propagation of VHF Radiowaves behind the Horizon in the Seismic Region”, Geomagnetism and Aeronomy, 56, No. 6, 761–773. Original Russian Text published in Geomagnetizm i Aeronomiya, 56, No. 6, 800–813.
Sreejith K.M., P.S. Sunil, R. Agrawal, A.P. Saji, D.S. Ramesh, and A.S. Rajawat, 2016. “Coseismic and early postseismic deformation due to the 25 April 2015, Mw 7.8 Gorkha, Nepal earthquake from InSAR and GPS measurements”, Geophys. Res. Lett., http://dx.doi.org/ 10.1002/2016GL067907.
Sridharan S., 2017. “Solar and lunar tidal variabilities in GPS-TEC and geomagnetic field variations: Seasonal as well as during the sudden stratospheric warming of 2010”, J. Geophys. Res. Space Physics, 122, 4571–4587, doi:10.1002/2016JA023196.
Stolle C., N. Olsen, A.D. Richmond, and· H.J. Opgenoorth, 2017. “Editorial: Topical Volume on Earth’s Magnetic Field Understanding Geomagnetic Sources from the Earth’s Interior and Its Environment”, Space Sci. Rev., 206, 1–3, DOI 10.1007/s11214-017-0346-8.
Sunil A.S., M.S. Bagiya, J. Catherine, L. Rolland, N. Sharma, P.S. Sunil, and D.S. Ramesh, 2017. “Dependence of near field co-seismic ionospheric perturbations on surface deformations: A case study based on the April, 25 2015 Gorkha Nepal earthquake”, Advances in Space Research, 59, 1200–1208.
Surkov V.V. and M. Hayakawa, 2016, “Semianalytical Models of Sprite Formation from Plasma Inhomogeneities”, Geomagnetism and Aeronomy, 56, No. 6, 724–732. Original Russian Text in Geomagnetizm i Aeronomiya, 56, No. 6, 763–771.
Tarduno J.A., R.D. Cottrell, M.K. Watkeys, A. Hofmann, P.V. Doubrovine, E.E. Mamajek, D. Liu, D.G. Sibeck, L.P. Neukirch, and Y. Usui, 2010. “Geodynamo, Solar Wind, and Magnetopause 3.4 to 3.45 Billion Years Ago”, Science, 327, No. 5970, 1238-1240, DOI: 10.1126/science.1183445.
Thébault E., V. Lesur K. Kauristie, and R. Shore, 2017. “Magnetic Field Data Correction in Space for Modelling the Lithospheric Magnetic Field”, Space Sci. Rev., 206, 191–223, DOI 10.1007/s11214-016-0309-5.
Thomas J.N., J. Huard, and F. Masci, 2017. “A statistical study of global ionospheric map total electron content changes prior to occurrences of M ≥ 6.0 earthquakes during 2000–2014”, J. Geophys. Res. Space Physics, 122, 2151–2161, doi:10.1002/2016JA023652.
Ursi A., M. Marisaldi, M. Tavani, D. Casella, P. Sanò, and S. Dietrich, 2016. “Detection of multiple terrestrial gamma-ray flashes from thunderstorm systems”, J. Geophys. Res. Space Physics, 121, 11,302–11,315, doi:10.1002/2016JA023136.
Ursi A., P. Sanò, D. Casella, M. Marisaldi, S. Dietrich, and M. Tavani, 2017. “A pipeline to link meteorological information and TGFs detected by AGILE”, J. Geophys. Res. Space Physics, 122, 2300–2309, doi:10.1002/2016JA023137.
Vieira F., P.R. Fagundes, K. Venkatesh, L.P. Goncharenko, and V.G. Pillat, 2017. “Total electron content disturbances during minor sudden stratospheric warming, over the Brazilian region: A case study during January 2012”, J. Geophys. Res. Space Physics, 122, 2119–2135, doi:10.1002/2016JA023650.
Wu Q., A. Maute, V. Yudin, L. Goncharenko, J. Noto, R. Kerr, and C. Jacobi, 2016. “Observations and simulations of midlatitude ionospheric and thermospheric response to the January 2013 stratospheric sudden warming event”, J. Geophys. Res. Space Physics, 121, 8995–9011, doi:10.1002/2016JA023043.
Yamazaki Y. and A. Maute, 2017. “Sq and EEJ – A Review on the Daily Variation of the Geomagnetic Field Caused by Ionospheric Dynamo Currents”, Space Sci. Rev., 206, 299–405, DOI 10.1007/s11214-016-0282-z.
Zettergren M.D., J.L. Semeter, and H. Dahlgren, 2015. “Dynamics of density cavities generated by frictional heating: Formation, distortion, and instability”, Geophys. Res. Lett., 42, No. 23, doi:10.1002/2015GL066806, 10120–10125.
Zettergren M.D., J.B. Snively, A. Komjathy, and O.P. Verkhoglyadova, 2017. “Nonlinear ionospheric responses to large-amplitude infrasonic-acoustic waves generated by undersea earthquakes”, J. Geophys. Res. Space Physics, 122, 2272–2291, doi:10.1002/2016JA023159.
Zhong J., W.X. Wan, Y. Wei, S.Y. Fu, W.X. Jiao, Z.J. Rong, L.H. Chai, and X.H. Han, 2014. “Increasing exposure of geosynchronous orbit in solar wind due to ‎decay of Earth’s dipole field”, J. Geophys. Res. Space Physics, 119, No. 12, doi:10.1002/2014JA020549, 9816-9822.
Zhou C., Y. Liu, S. Zhao, J. Liu, X. Zhang, J. Huang, X. Shen, B. Ni, and Z. Zhao, 2017. “An electric field penetration model for seismo-ionospheric research”, Advances in Space Research, 60, 2217–2232.
Zhu F., J. Lin, F. Su, and Y. Zhou, 2016. “A spatial analysis of the ionospheric TEC anomalies prior to M7.0+ earthquakes during 2003–2014”, Advances in Space Research, 58, 1732–1738.

References for Monographs and Books

Afanasieva V.I. (Ed.), M1954. Manual of Variable Magnetic Field of USSR, Gidrometeoizdat, Leningrad (in Russian).
Akasofu S.I., M1968. Polar and Magnetospheric Substorms, D. Reidel Рubl. Cо., Dordrecht, Holland.
Akasofu S.I., M1977. Physics of Magnetospheric Substorms, D. Reidel Pub1. Co., Dordrecht-Boston.
Akasofu S.I. and S. Chapman, M1972. Solar-Terrestrial Physics, Clarendon Press, Oxford. In Russian: M1974, Mir, Moscow.
Akasofu S.I. and J.R. Kan (Eds.), M1981. Physics of Auroral Arc Formation, Geophys. Monogr. Ser., 25, AGU, Washington, D.C.
Akhiezer I.A., R.V. Polovin, A.G. Sitenko, and K.N. Stepanov, M1974. Plasma Electrodynamics, Nauka, Moscow (in Russian).
Alania M.V. and L.I. Dorman, M1981. Cosmic Ray Distribution in the Interplanetary Space, METSNIEREBA, Tbilisi (in Russian).
Alania M.V., L.I. Dorman, R.G. Aslamazashvili, R.T. Gushchina, and T.V. Dzhapiashvili, M1987. Galactic Cosmic Ray Modulation by Solar Wind, Metsniereba, Tbilisi (in Russian).
Alfvén H., M1950. Cosmical Electrodynamics, Oxford.
Alfvén H., M1981. Cosmic Plasma, Springer, New York.
Alfvén H. and C.-G. Fälthammar, M1963. Cosmical Electrodynamics, Oxford.
Armstrong T.P. and R. Sahi, M1996. HISCALE Data Analysis Handbook, Dep. of Phys. and Astron., Univ. of Kansas, Lawrence.
Artsymovich L.A and R.Z. Sagdeev, M1979. Plasma Physics for Physicists, Atomizdat, Moscow (in Russian).
Aschwanden M., M2011. Self-organized Criticality in Astrophysics, Springer, Berlin.
Bagenal F., T. Dowling, and W. Mckinnon (Eds.), M2004. Jupiter: The Planet, Satellites and Magnetosphere, Cambridge Univ. Press, New York, M2004.
Bak P., M1996. How Nature Works, Copernicus, New York.
Baranov V.B. and K.V. Krasnobaev, M1977. Hydromagnetic Theory of Cosmic Plasma, Nauka, Moscow (in Russian).
Bateman H. and A. Erdelyi, M1953. Higher Transcendental Functions, McGraw-Hill Book, Co. Inc. N.Y.-Toronto-London (In Russian: Inostrannaja Literatura, Moscow, Vol. 1 – M1965, Vol. 2 – M1966).
Bateman H. and A. Erdelyi, M1954. Tables of Integral Transforms, McGraw-Hill, Maidenhead, U.K..
Battrick B. (Ed.), M1979. Magnetospheric Boundary Layers, Eur. Space Agency, Paris, ESA SP-148.
Battrick et al. (Eds.), M2001. Solar Encounter: Proceedings of the First Solar Orbiter Workshop, Eur. Space Agency, ESA-493.
Berezhko E.G., V.K. Elshin, G.F. Krymsky, and G.F. Petukhov, M1988. Cosmic Ray Generation by Shock Waves, Nauka, Novosibirsk (in Russian).
Berezin I.S. and I.P. Zhidkov, M1959. Methods of Computations, Physmatgiz, Moscow.
Berezinsky V.S., S.V. Bulanov, V.L. Ginzburg, V.A. Dogiel, and V.S. Ptuskin (ed. V.L. Ginzburg), M1990. Astrophysics of Cosmic Rays, Physmatgiz, Moscow (in Russian). English translation: North-Holland, Amsterdam, M1990.
Bleeker J.A.M., J. Geiss, and M.C.E. Huber (Eds.), M2002. The Century of Space Science, Kluwer Academic Publishers, Dordrecht.
Boguslavsky S.A., M1929. Paths of Electrons in the Electromagnetic Fields, ONTI, Moscow-Leningrad (in Russian).
Bohr H., M1950. Passage of Atomic Particles Through Matter. Inostr. Literatura, Moscow.
Bonch-Bruevich V.L. and S.V. Tyablikov, M1961. Method of Green’s Functions in Statistical Mechanics, Fizmatgiz, Moscow (in Russian).
Buchner J., C.T. Dum, and M. Scholer (Eds.), M2003. Space Plasma Simulations, Lecture Notes in Physics, 615, Springer-Verlag, Berlin/Heidelberg, M2003.
Burch J.L. (Ed.), M2000. The IMAGE Mission, Kluwer Acad., Norwell.
Burch J.L. and J.H. Waite, Jr. (Eds.), M1994. Solar System Plasmas in Space and Time, Geophys. Monogr. Ser., 84, AGU, Washington D.C.
Burch J.L., R.L. Carovillano, and S.K. Antiochos (Eds.), M1998. Sun-Earth Plasma Connections, Geophys. Monogr. Ser., 109, AGU, Washington, D.C.
Burch J., M. Schulz, and H. Spence (Eds.), M2005. Inner Magnetosphere Interactions: New Perspectives From Imaging, Geophys. Monogr. Ser., 159, AGU, Washington, D.C.
Burke W. and T.-D. Guyenne (Eds.), M1996. Environmental Modelling for Space-based applications, ESA Symposium Proceedings, ESA SP-392, ESA Publ. Div., Noordwijk.
Buti B. (Ed.), M1985. Advances in Space Plasma Physics, World Sci., Hackensack, N.J.
Butler R.F., M1992. Paleomagnetism: Magnetic Domains to Geologic Terraines, Blackwell Scientific Publications, Oxford.
Case K. and P. Zweifel, M1967. Linear Theory of Transport, Addison-Wesley Publ. Co., Massachusetts.
Chamberlain J.W., M1961. Physics of the Aurora and Airflow, Academic Press, New York and London.
Chandrasekhar S., M1960. Plasma Physics, Chicago Univ. Press, Chicago.
Chang T. and J.R. Jasperse (Eds.), M1996. Physics of Space Plasmas, 14, MIT Centre for Theor. Geo/Cosmo Plasma Phys., Cambridge, MA.
Chang T., M.K. Hudson, J.R. Jasperse, R.G. Johnson, P.M. Kintner and M. Schulz (Eds.), M1986. Ion Acceleration in the Magnetosphere and Ionosphere, Geophys. Monogr. Ser., 38, AGU, Washington, D.C.
Chang T., G.B. Crew, and J.R. Jasperse (Eds.), M1988. Physics of Space Plasmas, SPI Conf. Proc. and Reprint Ser., No. 8, Scientific Publishers, Inc., Cambridge, MA.
Channell J.E.T., D.V. Kent, W. Lowrie, and J.G. Meert (Eds.), M2004. Timescales of the Paleomagnetic Field, Geophysical Monograph Series, Volume 145, pp 328.
Chapman S. and J. Bartels, M1962. Geomagnetism, Clarendon Press, Oxford.
Chapman S. and R. S. Lindzen, M1970. Atmospheric Tides: Thermal and Gravitational, D. Reidel, Dordrecht, Netherlands.
Corovillano R.L., Z.F. McC1ay, and H.F. Padoski (Eds.), M1968. Physics of the Magnetosphere, D. Reidel Pub1. Со., Dordrecht.
Cowling T.G., M1957. Magnetohydrodynamics, Interscience Publishers LTD, London.
Daglis I.A. (ed.), M2001. Space Storms and Space Weather Hazards, Proc. NATO Advanced Study Institute, 19-29 June 2000, Hersonissos, Crete, NATO Science Series, Vol. 38, Kluwer Academic Publishers, Dordrecht.
Demidovich B.P., I.A. Maron, and É.Z. Shuvalova, M1962: Numerical Methods of Analysis, Physmatgiz, Moscow (in Russian).
Dessler A.J. (Ed.), M1983. Physics of the Jovian Magnetosphere, Cambridge Univ. Press, New York.
DeWitt C., J. Hiebolt, and A. Lebeau (Eds.), M1963. Geophysics: The Earth’s Environment, Proceedings of the 1962 Les Houches Summer School, Gordon and Breach, New York.
Dorman Lev I., M1957. Cosmic Ray Variations, Gostekhteorizdat, Moscow (in Russian). English translation: US Department of Defense, Ohio Air-Force Base, M1958.
Dorman Lev I., M1963a. Geophysical and Astrophysical Aspects of Cosmic Rays, North-Holland, Amsterdam, in series ‘Progress in Physics of Cosmic Ray and Elementary Particles’, Eds. J.G. Wilson and S.A. Wouthuysen, Vol. 7, pp. 1-324.
Dorman Lev I., M1963b. Cosmic Ray Variations and Space Research, NAUKa, Moscow (in Russian).
Dorman Lev I., M1972a. Acceleration Processes in Space, VINITI, Moscow (in Russian).
Dorman Lev I., M1972b. Meteorological Effects of Cosmic Rays, NAUKA, Moscow (in Russian); In English: NASA, Washington DC, M1973.
Dorman Lev I., M1974. Cosmic Rays: Variations and Space Exploration, North-Holland, Amsterdam.
Dorman Lev I., M1975a. Experimental and Theoretical Principles of Cosmic Ray Astrophysics, PHYSMATGIZ, Moscow (in Russian).
Dorman Lev I., M1975b. Variations of Galactic Cosmic Rays, Moscow State University Press, Moscow (in Russian).
Dorman Lev I., M1978. Cosmic Rays of Solar Origin, VINITI, Moscow (in series “Summary of Science”, Space Investigations, Vol.12), in Russian.
Dorman Lev I., M2004. Cosmic Rays in the Earth’s Atmosphere and Underground, Kluwer Academic Publishers, Dordrecht/Boston/London.
Dorman Lev I., M2006. Cosmic Ray Interactions, Propagation, and Acceleration in Space Plasmas, Springer, Dordrecht.
Dorman Lev I., M2009. Cosmic Rays in Magnetospheres of the Earth and other Planets, Springer, Heidelberg.
Dorman Lev I., M2010. Solar Neutrons and Related Phenomena, Springer, Heidelberg.
Dorman Lev I., M2017a. Plasmas and Energetic Processes in Geomagnetosphere, Volume I: Internal and External Sources, Structure, and Main Properties of Geomagnetosphere, Nova Science Publishers, New York.
Dorman Lev I., M2017b. Plasmas and Energetic Processes in Geomagnetosphere, Volume II: Magnetospheric Sheets, Reconnections, Particle Acceleration, and Substorms, Nova Science Publishers, New York.
Dorman Lev I., M2017c. Geomagnetosphere and Coupling Phenomena, Volume I: Solar Wind/IMF Coupling with Geomagnetosphere/Ionosphere, Nova Science Publishers, New York.
Dorman Lev I. and Irina V. Dorman, M2014. Cosmic Ray History, Nova Science Publishers, New York.
Dorman L.I. and E.V. Kolomeets, M1968. Solar Diurnal and Semidiurnal Cosmic Ray Variations from Maxima to Minima of Solar Activity. Nauka, Moscow (in Russian); In English: NASA, Washington D.C., M1972.
Dorman L.I. and I.D. Kozin, M1983. Cosmic Radiation in the Upper Atmosphere. PHYSMATGIZ, Moscow (in Russian).
Dorman L.I. and L.I. Miroshnichenko, M1968. Solar Cosmic Rays, PHYSMATGIZ, Moscow (in Russian). In English: NASA, Washington DC, M1976.
Dorman L.I., V.S. Smirnov and M.I. Tyasto, M1971. Cosmic Rays in the Earth’s Magnetic Field, PHYSMATGIZ, Moscow (in Russian); Translation in English: NASA, Washington DC, M1973.
Dorman L.I., R.T. Gushchina, D.F. Smart, and M.A. Shea, M1972. Effective Cut-Off Rigidities of Cosmic Rays, NAUKA, Moscow (in Russian and in English).
Dorman L.I., I.A. Pimenov and V.S. Satsuk, M1978. Mathematical Service of Geophysical Investigations on the Example of Cosmic Ray Variations, Nauka, Moscow (in Russian).
Dorman L.I., I.Ya. Libin, and Ya.L. Blokh, M1979. Scintillation Method of Cosmic Ray Investigations, Nauka, Moscow (in Russian).
Dungey J.W., M1954. Electrodynamics of the Outer Atmospheres, vol. 69, Ionos. Sci. Rep., Cambridge, Pa.
Dyer E.R. (Ed.), M1972. Critical Problems of Magnetospheric Physics, Proceedings of the Symposium, 11-13 May, 1972 in Madrid, Spain, Washington, D.C., National Ac. of Sci.
Egeland A., O. Holter, and A. Omholt (Eds.), M1973. Cosmical Geophysics, Universitetsforlaget, Oslo, Norway.
Engebretson M.J., K. Takahashi and M. Scholer (Eds.), M1994. Solar Wind Sources of Magnetospheric Ultra- Low-Frequency Waves, Geophys. Monogr. Ser., 81, AGU, Washington D.C.
Foing B. and B. Battrick (Eds.), M2002. Earth-Like Planets and Moons, Proceedings of the 36th ESLAB Symposium, ESA SP-514.
Formisano V. (Ed.), M1975. Magnetospheres Earth and Jupiter, Proc. Neil Brice Memor. Symp., Frascati, Italy, 1974, Dordrecht-Boston, D. Reidel Publishing Co..
Friedberg J.P., M1987. Ideal Magnetohydrodynamics, Springer, New York.
Fritz T.A. and S.F. Fung (Eds.), M2006. The Magnetospheric Cusps: Structure and Dynamics, Netherlands, Springer.
Gehrels T. (Ed.), M1976. Jupiter: Studies of the Interior, Atmosphere, Magnetosphere, and Satellites, Proceedings of the Colloquium, Tucson, Ariz., 1975, University of Arizona Press, Tucson, Arizona.
Gehrels T. and M.S. Matthews (Eds.), M1984. Saturn, Univ. of Ariz. Press, Tucson.
Ginzburg V.L. and A.A. Rukhadze, M1970. Waves in Magneto-Active Plasma, NAUKA, Moscow (in Russian).
Gombosi T.I., M1998. Physics of Space Environment, Cambridge University Press, Cambridge.
Hasegawa A., M1975. Plasma Instabilities and Non-Linear Effects, Springer, New York.
Hatton C.J. and D.A. Carswell, M1963. Asymptotic Directions of Approach of Vertically Incident Cosmic Rays for 85 Neutron Monitor Stations, Report No. CRGR-1165, Atomic Energy of Canada Ltd.
Hayakawa M. and Y. Fujinawa (Eds.), M1994. Electromagnetic Phenomena Related to Earth-quake Prediction. TERRAPUB, Tokyo.
Hayakawa M. and O.A. Molchanov (Eds.), M2002. Seismo Electromagnetics Lithosphere-Atmosphere-Ionosphere Coupling. TERRAPUB, Tokyo.
Helliwell R.A., M1965. Whistlers and Related Ionospheric Phenomena, Stanford Univ. Press, Stanford, Calif.
Hess V.N., Ml972. Radiation Belts and the Magnetosphere, Gosatomizdat, Moscow.
Hoshino M., Y. Omura and L.J. Lanzerotti, (Eds.), M2005. Frontiers in Magnetospheric Plasma Physics, COSPAR Colloq. Ser., 16, Elsevier Ltd., Oxford, UK, M2005.
Hultqvist B., M. Øieroset, G. Paschmann, and R. Treumann (Eds.), M1999. Magnetospheric Plasma Sources and Losses, Springer, New York.
Hultqvist B. and L. Stenflo (Eds.), M1975. Physics of the hot plasma in the magnetosphere; Proceedings of the Thirtieth Nobel Symposium, Kiruna, Sweden, April 2-4, 1975, Plenum Press, New York.
Hundhausen R.I., M1972. Coronal Expansion and Solar Wind, Springer-Verlag, Berlin-Heidelberg-New York.
Isaev S.I. and M.I. Pudovkin, M1972. Auroras and Magnetospheric Processes, NAUKA, Leningrad (in Russian).
Jackson J.D., M1975. Classical Electrodynamics, John Wiley, Hoboken, N.J.
Jeffrey A. and T. Taniuti, M1964. Non-linear Wave Propagation, Elsevier, New York.
Jones A.V., M1974. Aurora, D. Reidel Publ. Co., Dordrecht.
Johnson R.E., M1990. Energetic Charged Particle Interactions with Atmospheres and Surfaces, Springer-Verlag, New York.
Kadomtsev B.B., M1988. Collective Phenomena in Plasma, NAUKA, Moscow (in Russian).
Kamide Y. and W. Baumjohann, M1993. Magnetosphere–Ionosphere Coupling, Springer-Verlag.
Kamide Y. and J.A. Slavin (Eds.), M1986. Solar Wind–Magnetosphere Coupling, Terra Sci., Tokyo.
Kantrowitz A. and H. Petschek, M1966. Plasma Physics in Theory and Application, McGraw-Hill, New York.
Kelley M.C. and Heelis R.A., M1989. The Earth’s Ionosphere: Plasma Physics and Electrodynamics, Academic Press, San Diego.
Kennel C.F., M1995. Convection and Substorms (Paradigms of Magnetospheric Phenomenology), Oxford University Press, New York.
Khorosheva O.V., M1967. Spatial and Temporal Distribution of Auroras, Moscow, Nauka.
Kikuchi H. (Ed.), M1994. Dusty and Dirty Plasmas, Noise, and Chaos in Space and in the Laboratory, Plenum Press, New York.
Kivelson M.G. and C.T. Russell (Eds.), M1995. Introduction to Space Physics, Cambridge Univ. Press, New York.
Klimontovich Yu.L., M1990. Turbulent Motion and the Structure of Chaos. The New Approach to the Statistical Theory of Open Systems, Kluwer Academic Publishers, Dordrecht.
Klimontovich Yu.L., M1999. Statistical Theory of Open Systems, vol. 1, 2, Yanus-K, Moscow (in Russian).
Klyatskin V.I., M1975. Statistical Description of Dynamical Systems with Fluctuating Parameters, NAUKA, Moscow (in Russian).
Knott K. and B. Battrick (Eds.), M1976. Scientific Satellite Program during the International Magnetospheric Study, D. Reidel Publ. Co., Dordrecht.
Kokubun S. and Y. Kamide (Eds.), M1998. Proceedings of the International Conference on Substorms-4, Astrophysics and Space Science Library, 238, Kluwer Ac. Publishers.
Komarov I.V., L.I. Ponomarev, and S.Yu. Slavyanov, M1976. Spherical and Colon Spherical Functions, NAUKA, Moscow (in Russian).
Krall N.A. and A.W. Trivelpiece, M1973. Principles of Plasma Physics, McGraw-Hill, N. Y.
LaBelle J.W. and R.A. Treumann (Eds.), M2006. Geospace Electromagnetic Waves and Radiation, Lect. Not. in Phys., 687, Springer, Berlin, New York,
Landau L.D. and E.M. Lifshitz, M1957. Electrodynamics of Continuous Matter, GOSTEKHIZDAT, Moscow (in Russian).
Lans D.H., M1962. Numerical Methods for Computers, Foreign Literature Press (IL), Moscow (in Russian).
Lemaire J., M1985. Frontiers of the Plasmasphere (Theoretical Aspects), Université Catholique de Louvain, Faculté des Sciences, Louvain-la-Neuve, ISBN 2-87077-310-2
Lemaire J.F. and K.I. Gringauz, M1998. The Earth’s Plasmasphere, Cambridge Univ. Press, New York.
Lemaire J.F., D. Heynderickx, and D.N. Baker (Eds.), M1997. Radiation Belts: Models and Standards, AGU, Geophys. Monogr, 97.
Leroy C. and P.G. Rancoita, M2004. Principles of Radiation Interaction in Matter and Detection, World Sci., Hackensack, N.J.
Longmair K., M1966. Plasma Physics, Atomizdat, Moscow (in Russian).
Lui A. (Ed.), M1987. Magnetotail Physics, Johns Hopkins Univ. Press, Baltimore, Md.
Lyatsky V.B., M1978. Current Systems of Magnetospheric-Ionospheric Disturbances, Nauka, Moscow (in Russian).
Lyons L.R. and D.J. Williams, M1984. Quantitative Aspects of Magnetospheric Physics, Springer, New York.
Lyons L. and D. Willer, M1987. Magnetospheric Physics. Mir, Moscow (in Russian).
Maltsev Yu.P. (Ed.), M1993. Magnetospheric–Ionospheric Physics: A Handbook, Nauka, St. Petersburg (in Russian).
Mandelbrot B.B., M2002, Gaussian Self-Affinity and Fractals: Globality, the Earth, 1/f Noise and R/S, Springer-Verlag, NY.
Mathews J. and R.L. Walker, M1971. Mathematical Methods of Physics, Addison Wesley, Boston, Mass.
Matsumo H. and Y. Omura (Eds.), M1993. Computer Space Plasma Physics: Simulation Techniques and Software, Terra Sci., Tokyo.
Mayaud P.N. (Ed.), M1980. Derivation, Meaning and Use of Geomagnetic Indices, Geophys. Monogr. Ser., vol. 22, AGU, Washington, D.C.
McCormac B.M. (Ed.), M1966. Radiation Trapped in the Earth’s Magnetic Field, Astrophysics and Space Science Library, 5, Springer, New York.
McCormac B.M. (Ed.), M1968. Earth’s Particles and Fields, Springer, New York.
McCormac B.M. (Ed.), M1970. Particles and Fields in the Magnetosphere, D. Reidel Publ. Co., Dordrecht.
McCormac B.M., (Ed.), M1972. Earth’s Magnetospheric Processes, Proc. Symp. Cortina (1971), D. Reidel Publ. Co., Dordrecht.
McCormac B.M. (Ed.), M1974. Magnetospheric Physics, D. Reidel Publ. Co., Hongham, Mass.
McCormac B.M. (Ed.), M1976. Magnetospheric particles and fields, Astrophysics and Space Science Library, 58, Dordrecht, D. Reidel Publishing Co.
McCormack B.M. and A. Renzini (Eds.), M1970. Particles and Fields in the Magnetosphere, Proc. Symposium, Santa Barbara, Calif., 1969, Astrophysics and Space Science Library, 17, Springer-Verlag New York Inc.
McElhinny M.W. and P.L. McFadden, M2000. Paleomagnetism, Academic Press, New York.
McFadden L.-A., P. Weissman, and T. Johnson (Eds.), M2007: Encyclopedia of the Solar System (Second Edition), Elsevier.
Melrose D.B., M1980. Plasma Astrophysics, Gordon and Breach, Newark, N.J.
Melrose D.B., M1986. Instabilities in Space and Laboratory Plasmas, Cambridge Univ. Press, Cambridge.
Meng C.-I., M.J. Rycroft, and L.A. Frank (Eds.), M1991. Auroral Physics, Cambridge Univ. Press, New York.
Merrill R.T. and M.W. McElhinny, M1983. The Earth’s Magnetic Field, Academic Press, London.
Merrill R.T., M.W. McElhinny, and P.L. McFadden, M1997. The Magnetic Field of the Earth: Paleomagnetism, the Core and the Deep Mantle, Academic Press, San Diego, CA.
Miroshnichenko L.I., M2001. Solar Cosmic Rays, Kluwer Acad. Publishers, Dordrecht.
Miroshnichenko L.I. and V.M. Petrov, M1985. Dynamics of Radiation Conditions in Space, Energoatomizdat, Moscow (in Russian).
Mitra S.K., M1955. The Upper Atmosphere, Foreighn Literature, Moscow (in Russian).
Moffatt H.K., M1978. Magnetic Field Generation in Electrically Conducting Fluids, Cambridge Univ. Press, New York.
Monin A.S. and A.M. Yaglom, M1965. Statistical Hydromechanics, Vol. 1, Nauka, Moscow (in Russian).
Monin A.S. and A.M. Yaglom, M1967. Statistical Hydromechanics, Vol. 2, Nauka, Moscow (in Russian).
Moon P. and D.E. Spencer, M1971. Field Theory Handbook, 2nd ed., Springer, New York.
Morse P.M. and H. Feshbach, M1953. Methods of Theoretical Physics, Vol. 1, 2, McGraw-Hill Book Co Inc., N.Y.-Toronto-London. In Russian: Inostrannaja Literatura, Moscow, M1958.
Mysovskikh I.P., M1962. Lectures on Computation Methods, Moscow, FIZMATGIZ (in Russian).
Nishida A., M1978. Geomagnetic Diagnosis of the Magnetosphere, Series Physics and Chemistry in Space, Springer, New York.
Nishida A., D.N. Baker, and S.W.H. Cowley (Eds.), M1998. New Perspectives on the Earth’s Magnetotail, Geophys. Monogr. Ser., 105, AGU, Washington, D.C.
Ohtani S.-I., R. Fujii, M. Hesse and R.L. Lysak (Eds.), M2000. Magnetospheric Current Systems, Geophys. Monogr. Ser., 118, AGU, Washington, D.C.
Øksendal B., M1998. Stochastic Differential Equations, 5th edition, Springer, Berlin, Germany.
Panasyuk M.I. (Ed.), M2007. Model of Cosmos, Vol. 1, 8th edition, Moscow (in Russian).
Pandalai (Ed.), M2000. Recent Research Developments in Plasmas, Transworld Res. Network, Trivandrum, India, 1.
Parker E.N., M1963. Interplanetary Dynamical Processes, John Wiley and Sons, New York-London. In Russian (transl. by L.I. Miroshnichenko, Ed. L.I. Dorman): Inostrannaja Literatura, Moscow, M1965.
Parker E.N., M2007. Conversations on Electric and Magnetic Fields in the Cosmos, Princeton Univ. Press, Princeton, NJ.
Parks G., M1991. Physics of Space Plasmas, Addison-Wesley-Longman, Reading, Mass.
Paschmann G. and P.W. Daly (Eds.), M1998. Analysis Methods for Multi-Spacecraft Data, ISSI Sci. Rep. SR-001, Eur. Space Agency, Paris.
Paschmann G. and P.W. Daly (Eds.), M2000. Analysis Methods for Multi-Spacecraft Data, ISSI Sci. Rep. SR-001, Springer, New York.
Petviashvili V.I. and O.A. Pokhotelov, M1992. Solitary Waves in Plasmas and in the Atmosphere, Gordon and Breach, New York.
Piddington J.H., M1969. Cosmic Electrodynamics, Wiley Interscience, New York.
Pikelner S.B., M1961. Principles of Cosmic Electrodynamics, PHYSMATGIZ, Moscow (in Russian).
Pikelner S.B., M1966. Principles of Cosmic Electrodynamics, PHYSMATGIZ, Moscow (in Russian).
Ponomarev E.A., M1985. Magnetospheric Substorm Mechanism, NAUKA, Moscow. In Russian.
Potemra T.A. (Ed.), M1983. Magnetospheric Currents, Geophys. Monogr. Ser., 28, AGU, Washington, D.C.
Press W.H., B.P. Flannery, S.A. Teulolsky, and W.T. Wetterling, M1999. Numerical Recipes in C, Cambridge Univ. Press, New York.
Pudovkin M.I. and V.S. Semenov, M1985. The Reconnection Theory and Interaction of the Solar Wind with the Earth’s Magnetosphere, in series “Results of Researches on the International Geophysical Projects”, NAUKA, Moscow (in Russian).
Pudovkin M.I. and A.D. Shevnin (Eds.), M1978. Geomagnetic Activity and its Prediction, Nauka, Moscow.
Pudovkin M.I., Koselov V.P., Lazutin L.L., Troshichev O.A., and Chertkov A.D., M1977, The physical base for the prediction of the magnetospheric disturbances. Nauka, Leningrad (in Russian).
Pulinets S.A. and Boyarchuk K.A., M2004. Ionospheric Precursors of Earthquakes. Springer, Berlin, Germany.
Pulkkinen T.I., N.A. Tsyganenko, and R.H.W. Friedel, (Eds.), M2005. The Inner Magnetosphere: Physics and Modeling, Geophys. Monogr. Ser., 155, AGU, Washington, D.C.
Reeves G.D. (Ed.), M1996. Workshop on the Earth’s Trapped Particle Environment, AIP, Woodbury, New York.
Roederer J.G., M1970. Dynamics of Geomagnetically Trapped Radiation, Springer-Verlag, New York.
Rolfe E.J. and B. Kaldeich (Eds.), M1996. International Conference on Substorms, Proc. of the 3rd Intern. Conf., Versailles, ICS-3, ESA SP-389, Paris, European Space Agency.
Rucker H.O., S.J. Bauer, and B.M. Pedersen (Eds.), M1988. Planetary Radio Emissions II, Austrian Acad. of Sci. Press, Vienna.
Rucker H.O., S.J. Bauer, and B.M. Pedersen (Eds.), M1992. Planetary Radio Emissions III, Austrian Acad. of Sci. Press, Vienna.
Rucker H.O., S.J. Bauer, and A. Lecacheux (Eds.), M1997. Planetary Radio Emissions IV, Aust. Acad. of Sci. Press, Vienna.
Rucker H.O., M.L. Kaiser, and Y. Leblanc (Eds.), M2001. Planetary Radio Emissions V, Aust. Acad. of Sci. Press, Vienna.
Russell C.T., E.R. Priest, and L.C. Lee (Eds.), M1990. Physics of Magnetic Flux Ropes, Geophys. Monogr. Ser., 58, AGU, Washington, DC.
Rytov S.M., Yu.A. Kravtsov, and V.I. Tatarsky, M1977. Introduction to Statistical Radiophysics, Nauka, Moscow (in Russian).
Ryzhik I.M. and S.M. Gradstein, M1971. Tables of Integrals, Sums, Series and Products, Nauka, Moscow (in Russian).
Sagdeev R.Z. and M.N. Rozenblud (Eds.), M1984. Base of Plasma Physics, Vol. 2, Energoatomizdat, Moscow (in Russian).
Sagdeev R.Z., D.A. Usikov, and G.M. Zaslavsky, M1998. Nonlinear Physics, Harwood Academic Publishers, London.
Sandholt P.E., Carlson H.E., and Egeland A., M2002. Dayside and Polar Cap Aurora. Kluwer Academic Publishers, Dordrecht.
Sanz-Serna J.M. and M.P. Calvo, M1994. Numerical Hamiltonian Problems, Chapman & Hall, London.
Sauvaud J.-A. and Z. Němeček (Eds.), M2005. Multiscale Processes in the Earth’s Magnetosphere: From Interball to Cluster, NATO Sci. Ser., 178, Springer, New York.
Schindler K., M2007. Physics of Space Plasma Activity, Cambridge Univ. Press, New York.
Schulz M. and L. Lanzerotti, M1974. Particle Diffusion in the Radiation Belts, Springer, New York.
Schunk R.W. (Ed.), M1996. Handbook of Ionospheric Models, Scientific Committee on Solar-Terrestrial Physics.
Schunk R.W. and A.F. Nagy, M2000. Ionospheres, Cambridge Univ. Press, New York.
Sellers W.D., M1965. Physical Climatology, University of Chicago Press, Chicago,IL, USA, ISBN-10: 0226746992/ISBN-13: 978-0226746999.
Sergeev V.A. and N.A. Tsyganenko, M1980. The Earth’s Magnetosphere, Nauka, Moscow (in Russian).
Shabansky V.P., M1972. Electrodynamical Phenomena in the Earth’s Environment, Nauka, Moscow (in Russian).
Sharma A.S., Y. Kamide, and G.S. Lakhina (Eds.), M2004. Disturbances in Geospace: The Storm-Substorm Relationship, Geophys. Monogr. Ser., 142, AGU, Washington, DC.
Shkarofsky I., T. Johnston, and M. Bachynsky, M1966. The Particle Kinetics of Plasmas, Addison-Wesley Publ. Co., Massachusetts.
Song P., B.U.O. Sonnerup, and M.F. Thomsen (Eds.), M1995. Physics of the Magnetopause, Geophys. Monogr. Ser., 90, AGU, Washington, DC.
Spitzer L., M1956. Physics of Fully Ionized Gasses, New York.
Stix T.H., M1962. The Theory of Plasma Waves, McGraw-Hill, New York.
Stix T.H., M1992. Waves in Plasmas, Am. Inst. of Phys., College Park, Md.
Stix M., M2002. The Sun: an Introduction (second edition), Springer-Verlag, New York.
Stone R.G. and B.T. Tsurutani (Eds.) M1985. Collisionless Shocks in the Heliosophere: A Tutorial Review, Geophys. Monogr. Ser., 34, AGU, Washington, D.C.
Störmer C., M1955. The Polar Aurora, Oxford University Press, London and New York.
Tatarsky V.I., M1959. Theory of Fluctuation Events during Wave Propagation in Turbulent Atmosphere, Acad. of Sci. USSR, Moscow (in Russian).
Tatarsky V.I., M1967. Wave Propagation in Turbulent Atmosphere, Nauka, Moscow (in Russian).
Titchmarsh E.C., M1958. Eigenfunction Expansion of Differential Equations, Vol. 1, 2, Clarendon Press, Oxford.
Tsurutani B.T., W.D. Gonzalez, Y. Kamide, and J.K. Arballo (Eds.), M1997. Magnetospheric Storms, Geophys. Monogr. Ser., vol. 98, AGU, Washington, D.C.
Tsurutani B.T., R.L. McPherron, W.D. Gonzalez, G. Lu, J.H.A. Sobral and N. Gopalswarmy (Eds.), M2006. Recurrent Magnetic Storms: Corotating Solar Wind Streams, Geophys Monogr. Ser., 167, AGU, Washington, D.C.
Tverskoy B.A., M1968. Radiation Belt Dynamics, Nauka, Moscow (in Russian).
Tsitovich V.N., M1971. Theory of Turbulent Plasma, Atomizdat, Moscow (in Russian).
Van Allen J.A., M2004. Origins of Magnetospheric Physics. University of Iowa Press, Iowa City, USA.
Van Dyke M., M1964. Perturbation methods in fluid mechanics, Academic Press, New York.
Velinov P., G. Nestorov, and L. Dorman, M1974. Cosmic Ray Influence on the Ionosphere and Radio Wave Propagation, Bulgarian Ac. Sci. Press, Sofia (in Russian).
Vernov S.N. and L.I. Dorman (Eds.), M1965. Variations of Cosmic Rays and Solar Corpuscular Streams: Collection of Articles, National Aeronautics and Space Administration, Washington, D.C.
Volland H., M1984. Atmospheric Electrodynamics, Springer-Verlag, New York.
Wait J.R., M1996. Electromagnetic Waves in Stratified Media (corrected reprinting of 1962 edition). IEEE Press, New York.
Walker A.D.M., M2005. Magnetohydrodynamic Waves in Geospace: The Theory of ULF Waves and Their Interaction with Energetic Particles in the Solar-Terrestrial Environment, Inst. of Phys. Publ., Bristol, U.K.
Walt M., M1994. Introduction to Geomagnetically Trapped Radiation, Cambridge Univ. Press.
Watson G.N., M1949. A Treatise on the Theory of Bessel Functions, Inostr. Literatura, Moscow (in Russian).
Weissman P., L. McFadden, and T. Johnson (Eds.), M1999. Encyclopedia of the Solar System, Academic Press, London.
Williams D.J. (Ed.), M1976. Physics of Solar Planetary Environments, AGU, Washington, D.C.
Williams J. and G.D. Mead (Eds.), M1969. Magnetospheric Physics, D. Reidel Publ. Co., Dordrecht.
Winglee R.M. (Ed.), M2002. Proceedings of the Sixth International Conference on Substorms, Univ. of Wash. Press, Seattle.
Zeldovich Ya.B. and Yu.P. Raizer, M1966. The Physics of Shock Waves and High Temperature Hydro-Dynamical Phenomena, Nauka, Moscow (in Russian).
Zeleny L.M. and I.S. Veselovsky (Eds.), M2008. Plasmas Heliogeophysics, Vol. 1 and Vol. 2. Physmatlit, Moscow (in Russian).
Zirker J.B. (ed.), M1977. Coronal Holes and High Speed Wind Streams, Skylab Solar Workshop, Colorado University Press, Boulder, CO.
Zombeck M., M1982. Handbook of Space Astronomy and Astrophysics, Cambridge University Press.

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