温度各向异性的带电粒子束穿过冷等离子体时的纵向电子振荡

N. G. Zaki
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摘要

研究了在外加磁场作用下,旋转电子束与冷等离子体的相互作用。我们推导了具有各向异性温度的旋转电子束的适当介电张量分量(不同的平行T/sub /spl par/a/和垂直T/sub /spl perp/a/温度相对于外部磁场H/spl I.oarr//sub 0/)。研究了各向同性(T/sub /spl par/a/=T/sub /spl perp/a/)和各向异性(T/sub /spl par/a//spl Lt/T/sub /spl perp/a/,即T/sub /spl par/a//spl rarr/0)光束温度的特殊情况的重要性。推导了温度各向异性带电粒子束穿透冷电子等离子体纵向振荡的色散方程(不同平行温度T/sub /spl par/a/和垂直温度T/sub /spl perp/a/)。作为一种应用,我们将适时求解推导出的色散关系,以研究螺旋束-等离子体相互作用下的电流-对流不稳定性。我们测定了在没有光束的情况下等离子体的自纵向振荡。我们研究了各向同性(T/sub /spl par/a/=T/sub /spl perp/a/)和各向异性(T/sub /spl par/a//spl Lt/T/sub /spl perp/a/,即T/sub /spl par/a//spl rarr/0)光束温度下的色散方程。螺旋束与等离子体相互作用的理论可以应用于天体物理学和太阳-地球环境的研究。研究旋转电荷系统中的不稳定性对于阐明磁阱中等离子体约束的条件具有特殊的意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Longitudinal electron oscillations in a cold plasma penetrated through by a beam of charged particles with anisotropic temperature
A study is made for a gyrating electron beam interaction with a cold plasma in the presence of an external magnetic field. We derived the appropriate dielectric tensor components for a gyrating electron beam with anisotropic temperature (for different parallel T/sub /spl par/a/ and perpendicular T/sub /spl perp/a/ temperatures with respect to external magnetic field H/spl I.oarr//sub 0/). The importance of special cases for isotropic (T/sub /spl par/a/=T/sub /spl perp/a/) and anisotropic (T/sub /spl par/a//spl Lt/T/sub /spl perp/a/, i.e., if T/sub /spl par/a//spl rarr/0) beam temperature, is investigated. We derived the dispersion equation of longitudinal oscillations in a cold electronic plasma penetrated through by a beam of charged particles with anisotropic temperature (for different parallel T/sub /spl par/a/ and perpendicular T/sub /spl perp/a/ temperatures). As an application, the derived dispersion relation is solved in due course to investigate the current-convective instability (CCI) due to helical beam-plasma interaction. We determined the self longitudinal plasma oscillations in the absence of the beam. We investigated the derived dispersion equation in the two special cases for isotropic (T/sub /spl par/a/=T/sub /spl perp/a/) and anisotropic (T/sub /spl par/a//spl Lt/T/sub /spl perp/a/, i.e., if T/sub /spl par/a//spl rarr/0) beam temperatures. The theory of a helical beam interaction with a plasma can be applied in astrophysics and in the study of the Sun-Earth environment. The study of instabilities in a system of gyrating charges is of special interest for elucidating the conditions of plasma confinement in magnetic traps.
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