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Global Effects of Transmitted Shock Wave Propagation Through the Earth's Inner Magnetosphere: First Results from 3-D Hybrid Kinetic ModelingWe use a new hybrid kinetic model to simulate the response of ring current, outer radiation belt, and plasmaspheric particle populations to impulsive interplanetary shocks. Since particle distributions attending the interplanetary shock waves and in the ring current and radiation belts are non-Maxwellian, waveparticle interactions play a crucial role in energy transport within the inner magnetosphere. Finite gyroradius effects become important in mass loading the shock waves with the background plasma in the presence of higher energy ring current and radiation belt ions and electrons. Initial results show that shocks cause strong deformations in the global structure of the ring current, radiation belt, and plasmasphere. The ion velocity distribution functions at the shock front, in the ring current, and in the radiation belt help us determine energy transport through the Earth's inner magnetosphere.
Document ID
20170002746
Acquisition Source
Goddard Space Flight Center
Document Type
Reprint (Version printed in journal)
Authors
Lipatov, A. S.
(Maryland Univ. Greenbelt, MD, United States)
Sibeck, D. G.
(NASA Goddard Space Flight Center Greenbelt, MD United States)
Date Acquired
March 31, 2017
Publication Date
June 3, 2016
Publication Information
Publication: Planetary and Space Science
Publisher: ELSEVIER
Volume: 129
ISSN: 0032-0633
Subject Category
Space Sciences (General)
Report/Patent Number
GSFC-E-DAA-TN40791
Funding Number(s)
CONTRACT_GRANT: NNG11PL02A
Distribution Limits
Public
Copyright
Other

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