Effect of Ion Electron Beam Velocity on Alfven Waves in Multi Component Magnetospheric Plasma Particle Aspect Analysis

V. P. Ahirwar, G. Ahirwar
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Abstract

Received: 04/Jul/2019, Accepted: 20/Jul/2019, Online: 31/Aug/2019 Abstractthe main objective of present study is to understand the effect of ion-electron beam velocity on the Alfven waves in multi-component magnetospheric plasma by using method of particle aspect approach and using different plasma parameters in auroral acceleration region. Here one component is electron and other three components are the Hydrogen, Helium and Oxygen is mixed. We develop the dispersion relation and field-aligned currents of the Alfven waves with the help of General loss-Cone distribution function. The waves propagating in the direction of the ambient magnetic field along the z-axis are considered. The whole plasma has been considered to consist of resonant and non-resonant particles. It is assume that the resonant particles participate in energy exchange with the wave, whereas non-resonant particles support the oscillatory motion of the waves. Dispersion relation and associated field-aligned currents are evaluated for Alfven waves in the auroral region using particle aspect approach. The estimated results are shows the applications of Alfven waves in multi-component magnetospheric plasma in the auroral acceleration region of interplanetary space plasma as well as the magnetospheric plasma and astrophysical plasmas.
多分量磁层等离子体粒子方面分析中离子电子束速度对阿尔芬波的影响
摘要本研究的主要目的是利用粒子方面的方法和不同的等离子体参数在极光加速区研究离子-电子束速度对多分量磁层等离子体Alfven波的影响。这里一个成分是电子,另外三个成分是氢、氦和氧混合在一起。利用一般损失锥分布函数,导出了Alfven波的色散关系和场向电流。考虑沿z轴方向沿环境磁场方向传播的波。整个等离子体被认为是由共振粒子和非共振粒子组成的。假设共振粒子参与与波的能量交换,而非共振粒子支持波的振荡运动。利用粒子方面的方法计算了极光区阿尔芬波的色散关系和相关的场向电流。估计结果显示了Alfven波在多分量磁层等离子体中的应用,包括行星际空间等离子体的极光加速区以及磁层等离子体和天体物理等离子体。
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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