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- W2006133340 abstract "The particle transport equation which describes radial diffusion combined with quasi-linear diffusion by waves is analytically intractable and is usually dealt with by fixing a priori either the radial transport term or the wave diffusion term. For the case of electromagnetic cyclotron waves simplification results by taking moments of this equation, thereby generating three equations for the total number density of the energetic particles, their total energy , and their total perpendicular energy . The quasi-linear conservation equations for and allow one to estimate the total wave intensity in terms of the particle moments and their radial derivatives and thus to express wave diffusion entirely in terms of these moments. The resulting moment transport equations for the particles describe relaxation of toward a critical value /subc/ (or equivalently a critical value $beta$/subc/ of the plasma $beta$); when is less than /subc/, there can be no finite amplitude waves. From /sub c/ a critical flux value can be estimated which is never greater than the stably trapped flux limit (STFL) of Kennel and Petschek. It is shown that the STFL controls the anisotropy of the energetic plasma, while /sub c/ controls the loss rate. As one expects, the effective loss ratemore » is greater for than for , since particles may lose energy before they are precipitated. (AIP)« less" @default.
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- W2006133340 date "1975-12-01" @default.
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- W2006133340 title "Moment transport equations for wave-particle interactions in the magnetosphere" @default.
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- W2006133340 doi "https://doi.org/10.1029/ja080i034p04635" @default.
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