HF electric field effect on Buneman's instability in a relativistic plasma waveguide

K. El-Shorbagy
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引用次数: 12

Abstract

The stabilizing effect of a strong HF (pump) electrical field on the Buneman instability in a plane relativistic plasma waveguide is investigated. A new mathematical technique, the separation method, is applied to the two-fluid plasma model to separate the equations, which describe the system, into two parts: temporal and space parts. The temporal (dynamical) part enables us to determine the frequencies and growth rates of unstable modes; this part within the redefinition of natural frequencies coincides with the system describing HF suppression of the Buneman instability in a uniform unbounded plasma. Natural frequencies of oscillations and spatial distribution of the amplitude of the self-consistent electrical field are determined from the solution of a boundary-value problem (space part) taking into account the specific spatial distribution of plasma density. Plasma electrons are considered to have a relativistic velocity. It is shown that the growth rate instability in the relativistic plasma has been reduced compared to the nonrelativistic plasma. Also, it is found that the relativistic plasma electrons have not affected the solution of the space part of the problem.
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高频电场对相对论等离子体波导中布曼不稳定性的影响
研究了强高频(泵浦)电场对平面相对论等离子体波导布曼不稳定性的稳定作用。将一种新的数学技术——分离法应用于双流体等离子体模型,将描述系统的方程分离为时间和空间两部分。时间(动力学)部分使我们能够确定不稳定模态的频率和增长率;固有频率重新定义中的这一部分与描述均匀无界等离子体中高频抑制布曼不稳定性的系统相吻合。振荡的固有频率和自洽电场振幅的空间分布由考虑等离子体密度的特定空间分布的边值问题(空间部分)的解确定。等离子体电子被认为具有相对论速度。结果表明,相对于非相对论性等离子体,相对论性等离子体的生长速率不稳定性有所降低。此外,还发现相对论性等离子体电子对问题空间部分的解没有影响。
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