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Nonlinear Plasma Theory

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The article was published on 1969-01-01 and is currently open access. It has received 1030 citations till now. The article focuses on the topics: Ion acoustic wave & Acoustic wave equation.

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Nonlinear Evolution of the Whistler Heat Flux Instability

TL;DR: In this paper, the authors use the one-dimensional TRISTAN-MP particle-in-cell code to model the nonlinear evolution of the whistler heat flux instability that was proposed by Gary et al. (1999, 2000) to regulate the electron heat flux in the solar wind and astrophysical plasmas.
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A classification scheme for turbulent acceleration processes in solar flares

TL;DR: In this article, a classification scheme for stochastic acceleration models involving low-frequency plasma turbulence in a strongly magnetized plasma is established, taking into account both the properties of the accelerating electromagnetic field, and the nature of the transport of charged particles in the acceleration region.
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Weak turbulence theory for rotating magnetohydrodynamics and planetary flows

TL;DR: A weak turbulence theory for magnetohydrodynamics under rapid rotation and in the presence of a uniform large-scale magnetic field which is associated with a constant Alfven velocity is derived in this paper.
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A tutorial introduction to the statistical theory of turbulent plasmas, a half-century after Kadomtsev’s Plasma Turbulence and the resonance-broadening theory of Dupree and Weinstock

TL;DR: In this article, the authors present a review of the 50th anniversary of the influential review/monograph on plasma turbulence by B. B. Dupree and J. H. Weinstock.
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Nonlinear field line resonances: Dispersive effects

TL;DR: In this paper, the nonlinear interaction of dispersive shear Alfven wave (SAW) field line resonances (FLRs) and ion acoustic waves (IAWs), with applications to the Earth's magnetosphere, is described.