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Wave-particle interactions in the outer magnetosphere: A review
Space Science Reviews, 1975The application of wave-particle interactions to magnetospheric phenomenology is so extensive and wide-ranging that to attempt to review it in its entirety would result in the production of a sizeable monographic book. For this reason, I have chosen to restrict the present review to only wave-particle interactions and their implication in outer ...
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Linear Wave-Particle Interactions
1998Abstract Collisionless absorption of h.f. power is a remarkable property of hot plasmas, and it is of great theoretical interest to understand how it occurs. It also has practical importance, since the possibility of selective dissipation and thermalisation of h.f. waves with the appropriate frequency, phase velocity, and polarization is
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Wave–Particle and Wave–Wave Interactions
2012In Chap. 3 we have discussed how plasma responds to an external (weak) electromagnetic perturbation, which results in a specific wave dispersion and damping. This damping is linear, i.e., proportional to the wave amplitude and there is no change in the plasma distribution function other than small oscillations proportional to the wave amplitude ...
Gregory D. Fleishman, Igor N. Toptygin
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Gyroresonant Wave-Particle Interactions
1972This review will be restricted to gyroresonant interactions. The basic processes of these interactions are discussed in the frame of the quasi-linear theory. Frequencies of interaction, anisotropy of the particle distribution function, and amplification and diffusion coefficients are computed for different types of interaction and different regions of ...
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Ac Fields and Wave Particle Interactions
1970Several new experiments provide detailed information about electrostatic and electromagnetic plasma waves in the outer magnetosphere, magnetosheath, and solar wind. Dipole antennas now commonly detect the electric components of whistler mode chorus and triggered emissions near 20 to 50 % of the local or equatorial gyrofrequency, and purely ...
F. L. Scarf +4 more
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Wave-Particle Interactions in the Earth's Magnetosphere
2019 International Conference on Electromagnetics in Advanced Applications (ICEAA), 2019Features 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, 2011Energy 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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Subdynamics of nonresonant wave-particle interactions
Physical Review A, 1986, Kentwell, , Dewar
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Wave-particle interactions in hot plasmas
AIP Conference Proceedings, 2006This 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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