Wave excitation by REB in a waveguide filled with warm, magnetized plasma

S. Khalil, K. El-Shorbagy, E. N. El-Siragy
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引用次数: 2

Abstract

An important application of a relativistic electron beam (REB) is investigated, i.e., minimizing the energy losses in a waveguide filled with a warm, magnetized plasma. An analytical calculation is performed to find the plasma dielectric constant, which leads one to apply the boundary conditions at the plasma conductor interface. The dispersion equations which describes the electromagnetic waves, hence their damping rate in the waveguide, are derived. The necessary condition for the field stability and the amplification coefficient of these waves are obtained. The electron beam is found to play a crucial role in the field stability and in controlling the field attenuation in the waveguide.
REB在充满温暖磁化等离子体的波导中激发波
研究了相对论电子束(REB)的一个重要应用,即最小化充满温暖磁化等离子体的波导中的能量损失。通过解析计算得到等离子体介电常数,从而在等离子体导体界面处应用边界条件。导出了描述电磁波的色散方程,从而推导出电磁波在波导中的阻尼率。得到了这些波的场稳定性和放大系数的必要条件。电子束对波导的场稳定性和场衰减的控制起着至关重要的作用。
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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