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High-current Electron Beam Coupling to Hybrid Waveguide and Plasma Modes in a Dielectric Cherenkov Maser with a Plasma Layer

机译:具有等离子体层的电介质Cherenkov Maser中的高电流电子束与混合波导和等离子体模式的耦合

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The linear theory of a dielectric Cherenkov maser with a plasma layer has been developed. The dispersion relation has been derived for the model of infinitely thin, fully magnetized, monoenergetic hollow electron beam, in the axisymmetric case. The results of the numerical solution of the dispersion relation and the analysis of the beam coupling to hybrid waves, both hybrid waveguide and hybrid plasma modes, are presented. For the hybrid waveguide mode, spatial growth rate dependences on frequency at different plasma densities demonstrate improvement in gain for moderate densities, but strong shifting the amplification band and narrowing the bandwidth. For the hybrid plasma mode, the case of mildly relativistic, 200-250 keV beams is of interest, so that the wave phase velocity is just slightly greater than the speed of light in a dielectric medium. It has been shown that depending on beam and plasma parameters, the hybrid plasma mode can be separated from the hybrid waveguide mode, or be coupled to it through the beam resulting in strong gain increase, or exhibit a flat gain vs frequency dependence over a very broad band. The parameters, at which the -3 dB bandwidth calculated for 30 dB peak gain exceeds an octave, have been found.
机译:已经开发了具有等离子体层的电介质Cherenkov Maser的线性理论。对于无限薄,完全磁化,单元空心中空电子束的模型​​,可以推导出分散关系,轴对称壳体。呈现了分散关系的数值解的结果和与混合波耦合的分散关系,混合波导和混合等离子体模式。对于混合波导模式,不同等离子体密度下频率的空间生长速率依赖于适度的密度的增益改善,但是强大转换放大带并缩小带宽。对于混合等离子体模式,对温和相对论的情况,200-250keV光束的感兴趣,因此波相速度略大于电介质介质中的光速。已经表明,取决于光束和等离子体参数,混合等离子体模式可以与混合波导模式分离,或者通过光束耦合到它,从而产生强增益增加,或者呈现平坦增益与频率依赖性。宽带。已经找到了用于30dB峰值增益的-3 dB带宽的参数超过八度音高。

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