用漂移动力学Vlasov码研究束-等离子体相互作用中的磁场扩散

A. Ghizzo, P. Bertrand, M. Shoucri, E. Fijalkow, M. Feix
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引用次数: 8

摘要

开发了一种带有离子流体方程的漂移动力学欧拉Vlasov代码,用于研究将电子束注入二维磁化等离子体的问题,通常称为直流(dc)螺旋注入。研究了存在束等离子体不稳定性时电子在磁场中的扩散。考虑了磁场相对于波束方向倾斜的情况。为了分析束流注入引起的等离子体加热和电流驱动机理,研究了速度剪切开尔文-亥姆霍兹(KH)和束流-等离子体(BP)不稳定性之间的竞争关系。KH不稳定性产生与cE×B/B2漂移相关的低频等离子体对流运动。其中,扩散系数Dy和Dv∥分别描述了KH不稳定性在空间磁场中引起的异常扩散过程,以及速度sp中引起的动力学效应引起的速度扩散过程。
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Study of the diffusion across a magnetic field in a beam–plasma interaction using a drift‐kinetic Vlasov code
A drift‐kinetic Eulerian Vlasov code, with fluid equations for the ions, is developed to study the problem of the injection of an electron beam into a two‐dimensional magnetized plasma, often referred to as direct current (dc) helicity injection. The diffusion of electrons across a magnetic field in the presence of a beam–plasma instability is studied. The case of a magnetic field tilted with respect to the beam direction is considered. The competition between the velocity shear Kelvin–Helmholtz (KH) and the beam–plasma (BP) instabilities is investigated in order to analyze the plasma heating and current drive mechanism induced by the beam injection. The KH instability generates low‐frequency plasma convection motion associated with cE×B/B2 drift. In particular, the diffusion coefficients Dy and Dv ∥ describing, respectively, the anomalous diffusion process induced in space across the magnetic field by the KH instability, and the velocity diffusion process due to the kinetic effects induced in velocity sp...
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