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- W1922613229 abstract "[1] A gyrokinetic simulation model for nonlinear studies of the mirror instability is described. The model is set in a uniform, periodic slab with anisotropic ions and cold electrons. Particle-in-cell simulations with a noise reducing δfalgorithm show agreement with the linear theory of the mirror instability. Results of nonlinear simulations near marginal stability are presented. Single-mode simulations show saturation due to trapping. Simulations with a spectrum of unstable modes show that the negative magnetic perturbations saturate at a lower amplitude and earlier than the positive magnetic perturbations, which results in the development of peaked saturated structures. The saturation amplitude of negative magnetic perturbations is in agreement with the trapped particle theory, while the saturation amplitude of the positive magnetic perturbations is determined by the local change in the β⟂ (ratio of perpendicular plasma pressure to magnetic pressure) parameter." @default.
- W1922613229 created "2016-06-24" @default.
- W1922613229 creator A5058026460 @default.
- W1922613229 creator A5075576637 @default.
- W1922613229 date "2013-11-01" @default.
- W1922613229 modified "2023-10-16" @default.
- W1922613229 title "Gyrokinetic particle simulation of nonlinear evolution of mirror instability" @default.
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- W1922613229 doi "https://doi.org/10.1002/2013ja019308" @default.
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