Charged‐Particle Resonance Conditions and Transport Coefficients in Slab‐Mode Waves

  • Vainio R
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Abstract

Transport of charged particles in cold plasma is considered. The full dispersion relation for slab-mode waves is employed, and the quasi-linear particle scattering is discussed. Previous results of the dispersive-wave model on the ion mean free path are recalled and further developed. For small cross-helicities, the model predicts ion mean free paths that are not a †ected by the steepening of the turbulence spectrum at high wavenumbers, if the dissipation-range spectral index is q \ 6. Large cross-helicities, of the o H c o D 1, left-hand polarized waves, however, imply an approximately constant mean free path of the nonrelativis-tic protons, which may account for the long-standing Ñatness problem of the mean free path of solar Ñare particles. The mean free path in a mixture of slab-mode and isotropic fast-mode waves is also shown to agree with observations only in the case of contradicting a previously published o H c o D 1, result. Finally, it is shown that, owing to an interplay of resonances with whistlers and proton-cyclotron waves, electron bulk speeds can be considerably larger than the speed. This implies limitations on Alfve n di †usive acceleration of electrons at low Mach number shocks below ultrarelativistic energies.

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APA

Vainio, R. (2000). Charged‐Particle Resonance Conditions and Transport Coefficients in Slab‐Mode Waves. The Astrophysical Journal Supplement Series, 131(2), 519–529. https://doi.org/10.1086/317372

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