Negative-mass instability in nonlinear plasma waves

The negative-mass instability, previously found in ion traps, appears as a distinct regime of the sideband instability in nonlinear plasma waves with trapped particles. As the bounce frequency of these particles decreases with the bounce action, bunching can occur if the action distribution is inver...

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Bibliographic Details
Published in:Physical review letters Vol. 110; no. 21; p. 215006
Main Authors: Dodin, I Y, Schmit, P F, Rocks, J, Fisch, N J
Format: Journal Article
Language:English
Published: United States American Physical Society 22-05-2013
Online Access:Get full text
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Summary:The negative-mass instability, previously found in ion traps, appears as a distinct regime of the sideband instability in nonlinear plasma waves with trapped particles. As the bounce frequency of these particles decreases with the bounce action, bunching can occur if the action distribution is inverted in trapping islands. In contrast to existing theories that also infer instabilities from the anharmonicity of bounce oscillations, spatial periodicity of the islands turns out to be unimportant, and the particle distribution can be unstable even if it is flat at the resonance. An analytical model is proposed that describes both single traps and periodic nonlinear waves and concisely generalizes the conventional description of the sideband instability in plasma waves. The theoretical results are supported by particle-in-cell simulations carried out for a regime accentuating the negative-mass instability.
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USDOE
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.110.215006