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Anisotropic temperature effects on Landau damping in Kappa-Maxwellian astrophysical plasmas

机译:喀土旺斯华盛顿天体物理等离子体中Landau阻尼的各向异性温度效应

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摘要

In many physical situations, especially in space, plasmas are found to have anisotropic power-law distributions, i.e., they can have one-dimensional Kappa distribution with high-energy tails in a preferred direction and a Maxwellian distribution perpendicular to it. In this work, we have used this distribution to study the Landau damping of electron-acoustic waves (EAWs) in the Kappa-Maxwellian plasma. A linear dispersion relation is derived, and the characteristics of the wave frequency and the Landau damping rate are studied by the influence of these energetic electrons. We show that the parameters such as the ratio of thermal speed in the Kappa distribution to that of the Maxwellian, the spectral index, and the ratio of cold to hot electron densities in the Kappa distribution significantly modify the propagation characteristics of EAWs. (C) 2020 Elsevier B.V. All rights reserved.
机译:在许多物理情况下,特别是在太空中,发现等离子体具有各向异性的动力法分布,即,它们可以在优选方向上具有高能量尾部的一维κ分布和垂直于其的最大威尔峰分布。 在这项工作中,我们利用这种分布在Kappa-Maxwellian等离子体中研究了电子声波(EAW)的Landau阻尼。 通过这些能量电子的影响研究了线性分散关系,并且利用这些能量电子的影响研究了波频和LANDAU阻尼率的特性。 我们表明,诸如Kappa分布中的热速度与Maxwellian,光谱指数和κ分布中的热电子密度的比率的参数显着地修改了EAW的传播特性。 (c)2020 Elsevier B.V.保留所有权利。

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