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Auroral Dynamics and Space Weather
Yongliang Zhang (Edited by), Y Zhang (Author), Larry J. Paxton (Edited by)
9781118978702, Wiley
Hardback, published 25 March 2016
324 pages
28.7 x 22.4 x 2.5 cm, 1.202 kg
The aurora is the most visible manifestation of the connection of the Earth to the space environment and has inspired awe, curiosity, and scientific inquiry for centuries. Recent advances in observing techniques and modeling and theoretical work have revealed new auroral phenomena, provided a better understanding of auroral dynamics, and have led to an enhanced capability for auroral forecasts. This monograph features discussions of: Auroral Dynamics and Space Weather is a valuable contribution for scientists, researchers, space weather operators, and students of Earth's space environment.
Contributors vii Preface xi Part I: Aurora Types and Dynamics 1 1 Investigations of the Many Distinct Types of Auroras 2 Quasiperiodic Aurora: Outstanding Problems and Recent Results 3 Inverted]V Auroral Arcs and Alfvén Waves 4 Auroral Arcs and Ion Outflow 5 Isolated Proton Auroras and Pc1/EMIC Waves at Subauroral Latitudes 6 Dynamics of the Dayside Aurora as Viewed from the South Pole 7 Structures in Polar Rain Auroras 8 Dynamics Related to Plasmasheet Flow Bursts as Revealed from the Aurora 9 Role of Multiple Atmospheric Reflections in Formation of Electron Distribution Function in the Diffuse Aurora Region Part II: Hemispheric Conjugacy of Auroras 131 10 Mechanisms that Produce Auroral Asymmetries in Conjugate Hemispheres 11 Interhemispheric Symmetries and Asymmetries of Aurora from Ground]Based Conjugate Observations Part III: Substorm Aurora 163 12 Magnetospheric Substorm Onset by Current Disruption Processes 13 Substorm Auroral Dynamics Reproduced by Advanced Global Magnetosphere−Ionosphere (M–I) Coupling Simulation Part IV: Radio Aurora 191 14 The Radar Aurora 15 GPS Phase Scintillation at High Latitudes during Two Geomagnetic Storms 16 Radio Absorption in Auroral Region 17 Auroral Kilometric Radiation: Polarization and Spectra Observed Far from Earth Part V: Auroral Models and Predictions 275 18 Auroral Precipitation Models and Space Weather 19 Space Weather Products and Tools Used in Auroral Monitoring and Forecasting at CCMC/SWRC Index 303
Christopher A Colpitts 3
Eric J Lund 19
Christopher C Chaston 29
Romain Maggiolo 39
Kaori Sakaguchi, Kazuo Shiokawa, Yoshizumi Miyoshi, and Martin Connors 59
Donald J McEwen, Gulamabas Gulamhusen Sivjee, and Yongliang Zhang 71
Yongliang Zhang, Larry J Paxton, and Hyosub Kil 81
Larry R Lyons, Yukitoshi Nishimura, Beatrice Gallardo]Lacourt, Ying Zou, Eric F Donovan, Stephen Mende, Vassills Angelopoulos, John M Ruohoniemi, Kathryn A McWilliams, Don L Hampton, and Michael J Nicolls 95
George V Khazanov, Elizabeth W Himwich, Alex Glocer, and David G Sibeck 115
Nikolai Østgaard, Jone Peter Reistad, Paul Tenfjord, Karl Magnus Laundal, Kristian Snekvik, Steve Milan, and Stein Haaland 133
Natsuo Sato, Akira Kadokura, Tetsuo Motoba, Keisuke Hosokawa, Gunnlaugur Björnsson, and Thorsteinn Saemundsson 145
Anthony T Y Lui 165
Takashi Tanaka 177
David L Hysell 193
Paul Prikryl, Reza Ghoddousi]Fard, John M Ruohoniemi, and Evan G Thomas 211
John K Hargreaves 233
Kozo Hashimoto, Yoshitaka Goto, Yoshiya Kasahara, Hiroshi Matsumoto, and Roger R Anderson 255
Patrick T Newell, Kan Liou, Yongliang Zhang, Thomas S Sotirelis, Larry J Paxton, and Elizabeth J Mitchell 277
Yihua Zheng and Lutz Rastaetter 291
Subject Areas: Earth sciences [RB]
