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Wave-Particle Interactions in the Earth's Magnetosphere

2019 International Conference on Electromagnetics in Advanced Applications (ICEAA), 2019
Features of the Earth's magnetosphere such as the third radiation belt (or “storage ring”) have been a major observational achievement of the Radiation Belt Storm Probes program (renamed the “Van Allen Probes” mission in November 2012). A goal of that program has been to understand more thoroughly how high-energy electrons are accelerated deep inside ...
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Momentum transport by wave–particle interaction

Plasma Physics and Controlled Fusion, 2011
Energy and momentum can be transported across the plasma by waves emitted at one place and absorbed at another. Exchange of momentum and energy between the particles and the waves change the drift orbits, which may give rise to a non-ambipolar particle transport.
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Wave-particle interactions in hot plasmas

AIP Conference Proceedings, 2006
This overview talk focuses on the populations of particles which are transmitted through the nearly perpendicular termination shock from the solar wind to the heliosheath, and how they relax and excite waves in the heliosheath. The transmission process probably involves direct transmission of the very cold solar wind core.
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Weak Turbulence and Quasilinear Diffusion for Relativistic Wave-Particle Interactions Via a Markov Approach

Frontiers in Astronomy and Space Sciences, 2022
Tom Elsden   +2 more
exaly  

Wave-Particle Interaction in Astrophysical Plasma

2012
The growth or damping of the waves, the emission of radiation, the scattering and acceleration of particles—all these phenomena may result from wave-particle interaction, a process in which a wave exchanges energy with the particles in astrophysical plasma.
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Wave–particle interactions in a long traveling wave tube with upgraded helix

Physics of Plasmas, 2020
I L Caldas   +2 more
exaly  

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