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Nonlinear theory of relativistic beam-plasma instabilities in the regime of the collective Cherenkov effect

机译:集体切伦科夫效应体系中相对论性束流等离子体不稳定性的非线性理论

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摘要

A general mathematical model is proposed that is based on the Vlasov kinetic equation with a self-consistent field and describes the nonlinear dynamics of the electromagnetic instabilities of a relativistic electron beam in a spatially bounded plasma. Two limiting cases are analyzed, namely, high-frequency (HF) and low-frequency (LF) instabilities of a relativistic electron beam, of which the LF instability is a qualitatively new phenomenon in comparison with the known Cherenkov resonance effects. For instabilities in the regime of the collective Cherenkov effect, the equations containing cubic nonlinearities and describing the nonlinear saturation of the instabilities of a relativistic beam in a plasma are derived by using the methods of expansion in small perturbations of the trajectories and momenta of the beam electrons. Analytic expressions for the amplitudes of the interacting beam and plasma waves are obtained. The analytical results are shown to agree well with the exact solutions obtained numerically from the basic general mathematical model of the instabilities in question. The general mathematical model is also used to discuss the effects associated with variation in the constant component of the electron current in a beam-plasma system.
机译:提出了一个基于具有自洽场的Vlasov动力学方程的通用数学模型,该模型描述了空间受限等离子体中相对论电子束的电磁不稳定性的非线性动力学。分析了两种极限情况,即相对论电子束的高频(HF)和低频(LF)不稳定性,与已知的Cherenkov共振效应相比,LF不稳定性是定性的新现象。对于集体切伦科夫效应状态的不稳定性,通过使用在光束的轨迹和动量的小扰动下展开的方法,推导了包含立方非线性并描述等离子体中相对论光束不稳定性的非线性饱和度的方程式电子。得到了相互作用光束和等离子波幅度的解析表达式。分析结果显示与从所讨论的不稳定性的基本通用数学模型数值获得的精确解非常吻合。通用数学模型还用于讨论与电子束等离子体系统中电子电流的恒定分量变化相关的影响。

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