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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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Developments in the gyrofluid approach to Tokamak turbulence simulations

TL;DR: In this article, a status report on developments in the gyrofluid approach to simulating tokamak turbulence is given, with a detailed description of toroidal ITG-driven toroidal turbulence simulations.
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Fundamental Statistical Descriptions of Plasma Turbulence in Magnetic Fields

TL;DR: In this article, a pedagogical review of the history and current status of statistical theories of plasma turbulence is undertaken, focusing on conceptual foundations and methodology, not practical applications, and a general expression for the renormalized dielectric function is deduced.
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Transverse acceleration of oxygen ions by electromagnetic ion cyclotron resonance with broad band left‐hand polarized waves

TL;DR: In this article, it is suggested that the observed broad band electric field fluctuations in the frequency range between 0 and 100 Hz can be responsible for the transverse energization of the ions through cyclotron resonance heating with the left-hand polarized electromagnetic waves.
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Parallel Propagation of Nonlinear Low‐Frequency Waves in High‐β Plasma

André Rogister
- 01 Jan 1971 - 
TL;DR: In this paper, a pair of coupled, nonlinear, partial differential equations which describe the evolution of low-frequency, large-scale-length perturbations propagating parallel, or nearly parallel, to the equilibrium magnetic field in high-β plasma have been obtained.
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Diffuse ions produced by electromagnetic ion beam instabilities

TL;DR: In this article, the evolution of the electromagnetic ion beam instability driven by the reflected ion component backstreaming away from the earth's bow shock into the foreshock region is studied by means of computer simulation.