{"product_id":"dynamics-of-the-earths-radiation-belts-and-inner-magnetosphere-isbn-9780875904894","title":"Dynamics of the Earth's Radiation Belts and Inner Magnetosphere","description":"\u003cp\u003ePublished by the American Geophysical Union as part of the Geophysical Monograph Series, Volume 199.\u003cbr\u003e\u003ci\u003e\u003cbr\u003eDynamics of the Earth's Radiation Belts and Inner Magnetosphere\u003c\/i\u003e draws together current knowledge of the radiation belts prior to the launch of Radiation Belt Storm Probes (RPSP) and other imminent space missions, making this volume timely and unique. The volume will serve as a useful benchmark at this exciting and pivotal period in radiation belt research in advance of the new discoveries that the RPSP mission will surely bring. Highlights include the following: a review of the current state of the art of radiation belt science; a complete and up-to-date account of the wave-particle interactions that control the dynamical acceleration and loss processes of particles in the Earth's radiation belts and inner magnetosphere; a discussion emphasizing the importance of the cross-energy coupling of the particle populations of the radiation belts, ring current, and plasmasphere in controlling the dynamics of the inner magnetosphere; an outline of the design and operation of future satellite missions whose objectives are to discover the dominant physical processes that control the dynamics of the Earth's radiation belts and to advance our level of understanding of radiation belt dynamics ideally to the point of predictability; and an examination of the current state of knowledge of Earth's radiation belts from past and current spacecraft missions to the inner magnetosphere. \u003ci\u003eDynamics of the Earth's Radiation Belts and Inner\u003c\/i\u003e Magnetosphere will be a useful reference work for the specialist researcher, the student, and the general reader. In addition, the volume could be used as a supplementary text in any graduate-level course in space physics in which radiation belt physics is featured.\u003c\/p\u003e  \u003cp\u003ePreface\u003cbr\u003e \u003ci\u003eDanny Summers, Ian R. Mann, and Daniel N. Baker\u003c\/i\u003e ix\u003c\/p\u003e \u003cp\u003eIntroduction\u003cbr\u003e \u003ci\u003eDanny Summers, Ian R. Mann, and Daniel N. Baker\u003c\/i\u003e 1\u003c\/p\u003e \u003cp\u003e\u003cb\u003eSection I: Historical Perspective\u003c\/b\u003e\u003c\/p\u003e \u003cp\u003eSpace Weather: Affecting Technologies on Earth and in Space\u003cbr\u003e \u003ci\u003eLouis J. Lanzerotti\u003c\/i\u003e 11\u003c\/p\u003e \u003cp\u003e\u003cb\u003eSection II: Current State of Knowledge of Radiation Belts\u003c\/b\u003e\u003c\/p\u003e \u003cp\u003eSAMPEX: A Long-Serving Radiation Belt Sentinel\u003cbr\u003e \u003ci\u003eDaniel N. Baker and J. Bernard Blake\u003c\/i\u003e 21\u003c\/p\u003e \u003cp\u003eLarge-Amplitude Whistler Waves and Electron Acceleration in the Earth's Radiation Belts: A Review of STEREO and Wind Observations\u003cbr\u003e \u003ci\u003eC. A. Cattell, A. Breneman, K. Goetz, P. J. Kellogg, K. Kersten, J. R. Wygant, L. B. Wilson III, M. D. Looper, J. B. Blake, and I. Roth\u003c\/i\u003e 41\u003c\/p\u003e \u003cp\u003eClassification of Pc1-2 Electromagnetic Ion Cyclotron Waves at Geosynchronous Orbit\u003cbr\u003e \u003ci\u003eB. J. Fraser, S. K. Morley, R. S. Grew, and H. J. Singer\u003c\/i\u003e 53\u003c\/p\u003e \u003cp\u003eThe Role of Ultralow Frequency Waves in Radiation Belt Dynamics\u003cbr\u003e \u003ci\u003eIan R. Mann, Kyle R. Murphy, Louis G. Ozeke, I. Jonathan Rae, David K. Milling, Andy Kale, and Farideh Honary\u003c\/i\u003e 69\u003c\/p\u003e \u003cp\u003e\u003cb\u003eSection III: Space Missions\u003c\/b\u003e\u003c\/p\u003e \u003cp\u003eNASA's Radiation Belt Storm Probes Mission: From Concept to Reality\u003cbr\u003e \u003ci\u003eR. L. Kessel\u003c\/i\u003e 93\u003c\/p\u003e \u003cp\u003eThe Energization and Radiation in Geospace (ERG) Project\u003cbr\u003e \u003ci\u003eY. Miyoshi, T. Ono, T. Takashima, K. Asamura, M. Hirahara, Y. Kasaba, A. Matsuoka, H. Kojima, K. Shiokawa, K. Seki, M. Fujimoto, T. Nagatsuma, C. Z. Cheng, Y. Kazama, S. Kasahara, T. Mitani, H. Matsumoto, N. Higashio, A. Kumamoto, S. Yagitani, Y. Kasahara, K. Ishisaka, L. Blomberg, A. Fujimoto, Y. Katoh, Y. Ebihara, Y. Omura, M. Nosé, T. Hori, Y. Miyashita, Y.-M. Tanaka, T. Segawa, and ERG Working Group\u003c\/i\u003e 103\u003c\/p\u003e \u003cp\u003eRESONANCE Project for Studies of Wave-Particle Interactions in the Inner Magnetosphere\u003cbr\u003e \u003ci\u003eM. M. Mogilevsky, L. M. Zelenyi, A. G. Demekhov, A. A. Petrukovich, D. R. Shklyar, and RESONANCE Team\u003c\/i\u003e 117\u003c\/p\u003e \u003cp\u003e\u003cb\u003eSection IV: Modeling and Simulations\u003c\/b\u003e\u003c\/p\u003e \u003cp\u003eGlobal Structure of ULF Waves During the 24–26 September 1998 Geomagnetic Storm\u003cbr\u003e \u003ci\u003eScot R. Elkington, Anthony A. Chan, and Michael Wiltberger\u003c\/i\u003e 127\u003c\/p\u003e \u003cp\u003eULF Wave–Driven Radial Diffusion Simulations of the Outer Radiation Belt\u003cbr\u003e \u003ci\u003eLouis G. Ozeke, Ian R. Mann, Kyle R. Murphy, I. Jonathan Rae, and Anthony A. Chan\u003c\/i\u003e 139\u003c\/p\u003e \u003cp\u003eNonlinear Radial Transport in the Earth's Radiation Belts\u003cbr\u003e \u003ci\u003eB. T. Kress, M. K. Hudson, A. Y. Ukhorskiy, and H.-R. Mueller\u003c\/i\u003e 151\u003c\/p\u003e \u003cp\u003e\u003cb\u003eSection V: Radiation Belt Injections, Dropouts, and Magnetospheric Variability\u003c\/b\u003e\u003c\/p\u003e \u003cp\u003eTime Scales for Localized Radiation Belt Injections to Become a Thin Shell\u003cbr\u003e \u003ci\u003eM. W. Liemohn, S. Xu, S. Yan, M.-C. Fok, and Q. Zheng\u003c\/i\u003e 161\u003c\/p\u003e \u003cp\u003eRebuilding Process of the Outer Electron Radiation Belt: The Spacecraft Akebono Observations\u003cbr\u003e \u003ci\u003eT. Nagai\u003c\/i\u003e 177\u003c\/p\u003e \u003cp\u003eThe Shock Injection of 24 March 1991: Another Look\u003cbr\u003e \u003ci\u003eJ. B. Blake\u003c\/i\u003e 189\u003c\/p\u003e \u003cp\u003eOuter Radiation Belt Flux Dropouts: Current Understanding and Unresolved Questions\u003cbr\u003e \u003ci\u003eD. L. Turner, S. K. Morley, Y. Miyoshi, B. Ni, and C.-L. Huang\u003c\/i\u003e 195\u003c\/p\u003e \u003cp\u003eRapid Radiation Belt Losses Occurring During High-Speed Solar Wind Stream–Driven Storms: Importance of Energetic Electron Precipitation\u003cbr\u003e \u003ci\u003eAaron T. Hendry, Craig J. Rodger, Mark A. Clilverd, Neil R. Thomson, Steven K. Morley, and Tero Raita\u003c\/i\u003e 213\u003c\/p\u003e \u003cp\u003eBackground Magnetospheric Variability as Inferred From Long Time Series of GOES Data\u003cbr\u003e \u003ci\u003eDavid J. Thomson\u003c\/i\u003e 225\u003c\/p\u003e \u003cp\u003e\u003cb\u003eSection VI: Wave-Particle Interactions\u003c\/b\u003e\u003c\/p\u003e \u003cp\u003eGeneration Processes of Whistler Mode Chorus Emissions: Current Status of Nonlinear Wave Growth Theory\u003cbr\u003e \u003ci\u003eYoshiharu Omura, David Nunn, and Danny Summers\u003c\/i\u003e 243\u003c\/p\u003e \u003cp\u003eAspects of Nonlinear Wave-Particle Interactions\u003cbr\u003e \u003ci\u003eJay M. Albert, Xin Tao, and Jacob Bortnik\u003c\/i\u003e 255\u003c\/p\u003e \u003cp\u003eLinear and Nonlinear Growth of Magnetospheric Whistler Mode Waves\u003cbr\u003e \u003ci\u003eDanny Summers, Rongxin Tang, and Yoshiharu Omura\u003c\/i\u003e 265\u003c\/p\u003e \u003cp\u003eHigh-Energy Electron Diffusion by Resonant Interactions With Whistler Mode Hiss\u003cbr\u003e \u003ci\u003eJ.-F. Ripoll and D. Mourenas\u003c\/i\u003e 281\u003c\/p\u003e \u003cp\u003eRecent Advances in Understanding the Diffuse Auroral Precipitation: The Role of Resonant Wave-Particle Interactions\u003cbr\u003e \u003ci\u003eBinbin Ni and Richard M. Thorne\u003c\/i\u003e 291\u003c\/p\u003e \u003cp\u003e\u003cb\u003eSection VII: Energy Coupling in the Inner Magnetosphere\u003c\/b\u003e\u003c\/p\u003e \u003cp\u003eThe Role of the Earth's Ring Current in Radiation Belt Dynamics\u003cbr\u003e \u003ci\u003eVania K. Jordanova\u003c\/i\u003e 303\u003c\/p\u003e \u003cp\u003eRing Current Asymmetry and the Love-Gannon Relation\u003cbr\u003e \u003ci\u003eG. L. Siscoe and M.-C. Fok\u003c\/i\u003e 315\u003c\/p\u003e \u003cp\u003eThe Importance of the Plasmasphere Boundary Layer for Understanding Inner Magnetosphere Dynamics\u003cbr\u003e \u003ci\u003eMark B. Moldwin and Shasha Zou\u003c\/i\u003e 321\u003c\/p\u003e \u003cp\u003eThe Role of Quiet Time Ionospheric Plasma in the Storm Time Inner Magnetosphere\u003cbr\u003e \u003ci\u003eAndrew W. Yau, Andrew Howarth, W. K. Peterson, and Takumi Abe\u003c\/i\u003e 329\u003c\/p\u003e \u003cp\u003eCold Ion Outflow as a Source of Plasma for the Magnetosphere\u003cbr\u003e \u003ci\u003eS. Haaland, K. Li, A. Eriksson, M. André, E. Engwall, M. Förster, C. Johnsen, B. Lybekk, H. Nilsson, N. Ostgaard, A. Pedersen, and K. Svenes\u003c\/i\u003e 341\u003c\/p\u003e \u003cp\u003eWhat Happens When the Geomagnetic Field Reverses?\u003cbr\u003e \u003ci\u003eJ. F. Lemaire and S. F. Singer\u003c\/i\u003e 355\u003c\/p\u003e \u003cp\u003eSection VIII: Radiation Belts and Space Weather\u003c\/p\u003e \u003cp\u003eWhat the Satellite Design Community Needs From the Radiation Belt Science Community\u003cbr\u003e \u003ci\u003eT. P. O'Brien, J. E. Mazur, and T. B. Guild\u003c\/i\u003e 365\u003c\/p\u003e \u003cp\u003eStorm Responses of Radiation Belts During Solar Cycle 23: HEO Satellite Observations\u003cbr\u003e \u003ci\u003eJ. F. Fennell, S. Kanekal, and J. L. Roeder\u003c\/i\u003e 371\u003c\/p\u003e \u003cp\u003eColorado Student Space Weather Experiment: Differential Flux Measurements of Energetic Particles in a Highly Inclined Low Earth Orbit\u003cbr\u003e \u003ci\u003eX. Li, S. Palo, R. Kohnert, D. Gerhardt, L. Blum, Q. Schiller, D. Turner, W. Tu, N. Sheiko, and C. Shearer Cooper\u003c\/i\u003e 385\u003c\/p\u003e \u003cp\u003e\u003cb\u003eSection IX: Radiation Belts Beyond Earth\u003c\/b\u003e\u003c\/p\u003e \u003cp\u003eRadiation Belts of the Solar System and Universe\u003cbr\u003e \u003ci\u003eB. H. Mauk\u003c\/i\u003e 405\u003c\/p\u003e \u003cp\u003ePlasma Wave Observations at Earth, Jupiter, and Saturn\u003cbr\u003e \u003ci\u003eG. B. Hospodarsky, K. Sigsbee, J. S. Leisner, J. D. Menietti, W. S. Kurth, D. A. Gurnett, C. A. Kletzing, and O. Santolik\u003c\/i\u003e 415\u003c\/p\u003e \u003cp\u003eAGU Category Index 431\u003c\/p\u003e  \u003cp\u003eDanny Summers and I. R. Mann are the authors of Dynamics of the Earth's Radiation Belts and Inner Magnetosphere, published by Wiley.\u003c\/p\u003e","brand":"American Geophysical Union","offers":[{"title":"Default Title","offer_id":47989093368037,"sku":"NP9780875904894","price":155.95,"currency_code":"USD","in_stock":false}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/1842\/7735\/files\/9780875904894.jpg?v=1761782768","url":"https:\/\/k12savings.com\/products\/dynamics-of-the-earths-radiation-belts-and-inner-magnetosphere-isbn-9780875904894","provider":"K12savings","version":"1.0","type":"link"}