Propagation properties of dissipative waves in non Maxwellian plasmas

M. Mehdipoor
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Abstract

The propagation of the ion-acoustic shock waves (dissipative waves) are presented in a plasma consisting of fluid ions and cold and hot electrons. Cold and hot electrons are considered as Maxwellian and kappa distribution functions, respectively. Using reductive perturbation technique, Korteweg-de-Vries-Burger (KdVB) and Burgers equations are derived for shock waves in the present plasma model. It is found that both positive (compressive) and negative (rarefactive) ion-acoustic shock waves can be propagating in present medium. Finally, the influence of different parameters on both these shock waves are studied numerically. Our results are important for the electrostatic shock wave structures in space plasmas.
非麦克斯韦等离子体中耗散波的传播特性
研究了离子声激波(耗散波)在由流体离子和冷热电子组成的等离子体中的传播。冷电子和热电子分别被认为是麦克斯韦分布函数和kappa分布函数。利用约化微扰技术,导出了当前等离子体模型中激波的KdVB和Burgers方程。研究发现,正(压缩)和负(折射)离子声激波都能在现有介质中传播。最后,数值分析了不同参数对两种激波的影响。研究结果对空间等离子体静电激波结构具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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