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Whistler wave emission by a modulated electron beam injected into a plasma column surrounded by a uniform medium

机译:通过注入被均匀介质包围的等离子体柱的调制电子束产生的惠斯勒波发射

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摘要

The efficiency of whistler wave radiation by a density modulated and thin electron beam of finite length injected parallel with respect to the constant ambient magnetic field into a, cylindrical plasma column surrounded by a uniform isotropic medium and aligned along the magnetic field is studied. A rigorous analytical derivation of the wave fields excited by the beam in the plasma column is presented. The time-averaged power radiated by the beam at the modulation frequency is determined. In particular, numerical calculations performed for physical conditions relevant to laboratory magnetized discharge plasmas show that, in the presence of a plasma column, the power lost by the modulated beam can be efficiently enhanced owing to resonant Cherenkov excitation of guided whistler modes at the beam modulation frequency.
机译:研究了由密度调制的有限长度的细电子束产生的吹哨波辐射的效率,该细束电子束相对于恒定的环境磁场平行注入到均匀的各向同性介质包围并沿磁场排列的圆柱形等离子柱中。提出了在等离子柱中由束激发的波场的严格分析推导。确定光束以调制频率辐射的时间平均功率。特别地,对与实验室磁化放电等离子体有关的物理条件进行的数值计算表明,在存在等离子体柱的情况下,归因于光束调制时导引的惠斯勒模式的共振Cherenkov激发,可以有效提高调制光束的功率损耗频率。

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