Kinetic slow mode-type solitons

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Date
2005
Volume
12
Issue
2
Journal
Series Titel
Book Title
Publisher
Göttingen : Copernicus GmbH
Abstract

One-dimensional hybrid code simulations are presented, carried out in order both to study solitary waves of the slow mode branch in an isotropic, collisionless, medium-β plasma (βi=0.25) and to test the fluid based soliton interpretation of Cluster observed strong magnetic depressions (Stasiewicz et al., 200; Stasiewicz, 2004) against kinetic theory. In the simulations, a variety of strongly oblique, large amplitude, solitons are seen, including solitons with Alfvenic polarization, similar to those predicted by the Hall-MHD theory, and robust, almost non-propagating, solitary structures of slow magnetosonic type with strong magnetic field depressions and perpendicular ion heating, which have no counterpart in fluid theory. The results support the soliton-based interpretation of the Cluster observations, but reveal substantial deficiencies of Hall-MHD theory in describing slow mode-type solitons in a plasma of moderate beta.

Description
Keywords
magnetohydrodynamics, plasma
Citation
Baumgärtel, K., Sauer, K., & Dubinin, E. (2005). Kinetic slow mode-type solitons. 12(2). https://doi.org//10.5194/npg-12-291-2005
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License
CC BY-NC-SA 2.5 Unported