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Dayside Magnetosphere Interactions
Qiugang Zong (Edited by), Q Zong (Author), Philippe Escoubet (Edited by), David Sibeck (Edited by), Guan Le (Edited by), Hui Zhang (Edited by)
9781119509639, Wiley
Hardback, published 6 July 2020
320 pages
27.9 x 21.8 x 2.3 cm, 1.066 kg
Exploring the processes and phenomena of Earth's dayside magnetosphere Energy and momentum transfer, initially taking place at the dayside magnetopause, is responsible for a variety of phenomenon that we can measure on the ground. Data obtained from observations of Earth’s dayside magnetosphere increases our knowledge of the processes by which solar wind mass, momentum, and energy enter the magnetosphere. Dayside Magnetosphere Interactions outlines the physics and processes of dayside magnetospheric phenomena, the role of solar wind in generating ultra-low frequency waves, and solar wind-magnetosphere-ionosphere coupling. Volume highlights include: The American Geophysical Union promotes discovery in Earth and space science for the benefit of humanity. Its publications disseminate scientific knowledge and provide resources for researchers, students, and professionals. Find out more about this book from this Q&A with the editors
Contributors vii Preface xi 1. A Brief History of Dayside Magnetospheric Physics 1 Part I: Physics of Dayside Magnetospheric Response to Solar Wind Discontinuities 2. Transient Phenomena at the Magnetopause and Bow Shock and Their Ground Signatures: Summary of the Geospace Environment Modeling (GEM) Focus Group Findings Between 2012 and 2016 13 3. Transient Solar Wind–Magnetosphere–Ionosphere Interaction Associated with Foreshock and Magnetosheath Transients and Localized Magnetopause Reconnection 39 4. Dayside Magnetospheric Interactions Inferred from Dayside Diffuse Aurora and Throat Aurora 55 5. Magnetosphere Response to Solar Wind Dynamic Pressure Change: Vortices, ULF Waves, and Aurorae 77 Part II: Structure and Dynamics of Dayside Boundaries 6. Cluster Mission’s Recent Highlights at Dayside Boundaries 101 7. Structure and Dynamics of the Magnetosheath 117 8. An Examination of the Magnetopause Position and Shape Based Upon New Observations 135 9. Methods for Finding Magnetic Nulls and Reconstructing Field Topology: A Review 153 Part III: The Roles of Solar Wind Sources on Wave Generations and Dynamic Processes in the Inner Magnetosphere 10. Theoretical Studies of Standing Toroidal Alfvén Waves in Dipole‐Like Magnetosphere 175 11. Ultra-Low-Frequency Wave–Particle Interactions in Earth’s Outer Radiation Belt 189 12. Recent Advances in Understanding Radiation Belt Electron Dynamics Due to Wave–Particle Interactions 207 13. Current Status of Inner Magnetosphere and Radiation Belt Modeling 231 Part IV: Cold Plasmas of Ionospheric Origin and Their Role in Coupling Different Regions in Geospace 14. Multi‐Point Observations of the Geospace Plume 245 15. Interactions Between ULF Waves and Cold Plasmaspheric Particles 265 16. Formation and Evolution of Polar Cap Ionospheric Patches and Their Associated Upflows and Scintillations: A Review 285 17. Dayside Magnetosphere Interactions: Progress in Our Understanding and Outstanding Questions 303 Index 307
A. Otto
Hui Zhang and Qiugang Zong
Y. Nishimura, B. Wang, Y. Zou, E. F. Donovan, V. Angelopoulos, J. I. Moen, L. B. Clausen, and T. Nagatsuma
De‐Sheng Han
Q. Q. Shi, X.‐C. Shen, A. M. Tian, A. W. Degeling, Qiugang Zong, S. Y. Fu, Z. Y. Pu, H. Y. Zhao, Hui Zhang, and S. T. Yao
Philippe Escoubet, A. Masson, H. Laakso, and M. L. Goldstein
Katariina Nykyri
Z. Němeček, J. Šafránková, and J. Šimůnek
H. S. Fu, Z. Wang, Qiugang Zong, X. H. Chen, J. S. He, A. Vaivads, and V. Olshevsky
A. S. Leonovich and D. A. Kozlov
R. Rankin, C. R. Wang, Y. F. Wang, Qiugang Zong, X. Z. Zhou, A. W. Degeling, D. Sydorenko, and G. Whittall-Scherfee
W. Li, Q. Ma, J. Bortnik, and R. M. Thorne
Mei‐Ching Fok
J. C. Foster, P. J. Erickson, B. M. Walsh, J. R. Wygant, A. J. Coster, and Qing‐He Zhang
Qiugang Zong, Jie Ren, and X. Z. Zhou
Qing‐He Zhang, Zan‐Yang Xing, Yong Wang, and Yu‐Zhang Ma
Qiugang Zong, Philippe Escoubet, David Sibeck, Guan Le, and Hui Zhang
Subject Areas: Earth sciences [RB]
