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Geospace features highly dynamic populations of charged particles with a wide range of energies from thermal to ultra-relativistic. Influenced by magnetic and electric fields in the terrestrial magnetosphere driven by solar wind forcing, changes in the numbers and energies of these particles lead to a variety of space weather phenomena, some of which are detrimental to space infrastructure. This book presents an overview of the latest discoveries and current scientific understanding of the coupling of electromagnetic waves and charged particles during magnetic storms, and explains the observed dynamics of these particle populations. The book furthermore includes investigations relevant to understanding and forecasting this space environment and the adverse impacts of space weather. High-energy electrons and ions in the Van Allen radiation belts and the ring current are of particular interest and importance with regard to the operation of space-based technological infrastructure upon which 21st century civilisation increasingly relies. This book presents the latest research on the sources, transport, acceleration and loss of these energetic particle populations, as well as their coupling during geospace magnetic storms.
This book investigates the complex coupling mechanisms between electromagnetic waves and charged particle populations within the terrestrial magnetosphere during magnetic storms. The authors, Georgios Balasis, Ioannis A. Daglis, and I. R. Mann, synthesize current research to explain how solar wind forcing drives dynamic changes in geospace. By examining the acceleration, transport, and loss of high-energy electrons and ions, the text provides a framework for understanding the space environment and its impact on technological infrastructure.
What You Will Find
Scope Limits
Experts identify this work as a technical resource for researchers and graduate students specializing in space physics and magnetospheric dynamics. Readers frequently note the high level of academic rigor and the specific focus on the interplay between wave-particle interactions and space weather forecasting.
Page Count:
320
Publication Date:
2016-01-01
Publisher:
OUP Oxford
ISBN-10:
0191015350
ISBN-13:
9780191015359
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