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Temporal evolution of the microwave spectrum in the course of a radiation pulse from a relativistic Cherenkov plasma maser

机译:相对论的契伦科夫等离子体激射器在辐射脉冲过程中微波光谱的时间演化

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A new Cherenkov plasma maser driven by a high-current relativistic electron beam (500 kV, 2 kA, 1 μs) was designed. The frequency of microwaves was tuned from 1.5 to 6 GHz with a power output from 50 to 80 MW and pulse duration from 500 to 700 ns. The radiation frequency depends on the plasma density and may be re-established during less than 100 μs. In different operation regimes microwave spectra were obtained with a width from 40 MHz to 1 GHz, and the spectra changed in the course of the pulses. The results of experiments coincide well with that of analytical theory and numerical simulations.
机译:设计了一种由高电流相对论电子束(500 kV,2 kA,1μs)驱动的新型Cherenkov等离子体脉搏器。微波频率从1.5到6 GHz调谐,功率输出从50到80 MW,脉冲持续时间从500到700 ns。辐射频率取决于等离子体密度,可以在不到100μs的时间内重新建立。在不同的操作方式下,获得了从40 MHz到1 GHz的宽度的微波光谱,并且光谱在脉冲过程中发生了变化。实验结果与分析理论和数值模拟结果吻合良好。

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