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Influence of the Beam Self-Fields on the Dispersion Characteristics of EM Waves in a Dielectric Waveguide Filled with Plasma

机译:束自场对填充等离子体的介质波导中EM波的色散特性的影响

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Considering the self-flelds of relativistic electron beam (REB), the electron beam injected in plasma will form an ion-channel, which can stably guide REB transmitted in plasma. Based on the effect of ion-channel, the EM dispersion characteristics in a dielectric waveguide filled with plasmas is studied by using linear electromagnetic (EM) hydrodynamics perturbation theory. Both the TM mode dispersion equation and the dispersion relation are derived. After that, a discussion on the conditions of Cherenkov radiation in this system is given. It was found that the betatron oscillation of the REB is one of the important factors for the slow-wave EM instability in this system. The dispersion relation is of the form of electromagnetic-electrostatic (EM-ES) hybrid mode, which is different from the case where the effect of the ion channel is neglected.
机译:考虑到相对论电子束(REB)的自磁场,注入等离子体的电子束会形成一个离子通道,可以稳定地引导等离子体中透射的REB。基于离子通道的影响,利用线性电磁(EM)流体动力学微扰理论研究了填充等离子体的介质波导中的EM色散特性。推导了TM模式色散方程和色散关系。之后,讨论了该系统中切伦科夫辐射的条件。已经发现,REB的电子感应加速器振荡是该系统中慢波EM不稳定性的重要因素之一。色散关系采用电磁-静电(EM-ES)混合模式的形式,这与忽略离子通道效应的情况不同。

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