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Repetitive nanosecond-pulse discharge in a highly nonuniform electric field in atmospheric air: X-ray emission and runaway electron generation

机译:大气中高度不均匀电场中的重复纳秒脉冲放电:X射线发射和失控电子生成

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摘要

Repetitive nanosecond-pulse discharge with a highly inhomogeneous electric field was investigated in air at atmospheric pressure. Three repetitive nanosecond generators were used, and the rise times of the voltage pulses were 15,1, and 0.2 ns, respectively. Under different experimental conditions, X-rays and runaway electron beams were directly measured using various setups. The variables affecting X-rays and runaway electrons, including gap distance, pulse repetition frequency, anode geometry, and material, were investigated. It was shown that it was significantly easier to record the X-rays than the runaway electrons in the repetitive nanosecond-pulse discharge. It was confirmed that a volume diffuse discharge was attributed to the generation of runaway electrons and the corresponding X-rays.
机译:在大气中的空气中研究了具有高度不均匀电场的重复纳秒脉冲放电。使用了三个重复的纳秒发生器,电压脉冲的上升时间分别为15,1和0.2 ns。在不同的实验条件下,使用各种设置直接测量X射线和失控电子束。研究了影响X射线和电子失控的变量,包括间隙距离,脉冲重复频率,阳极几何形状和材料。结果表明,在重复的纳秒脉冲放电中,记录X射线比失控电子要容易得多。证实了体积扩散放电归因于失控电子的产生和相应的X射线。

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