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NASA NTRS · 19850054288

The zero-frequency ion ring instability

Abstract

The electrostatic zero-frequency ion ring instability with wave vector perpendicular to a uniform magnetic field B is examined through linear and second-order theory as well as by computer simulation. In the simulation ions are taken as magnetized particles; the electrons are described as a massless fluid subject to E x B motion. Saturation of the instability is primarily due to broadening of the ion ring distribution. A second-order theory provides an approximate criterion for the saturation amplitude, as does a simple trapping argument. Thus, for the simulation presented here, both quasi-linear and trapping effects contribute to saturation.

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BibTeXRIS

Gary, S. P., Pongratz, M. B., Madland, C. D., Swift, D. W.. 1985-06-01. The zero-frequency ion ring instability. https://ntrs.nasa.gov/citations/19850054288

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