Influence of a voltage pulse rise time and pressure of air and nitrogen on the parameters of runaway electron beams

D. Beloplotov, V. Tarasenko, D. A. Sorokin
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Abstract

The generation of runaway electron beams with different high-voltage generators has been studied. The current of runaway electron beams generated during breakdown in air and nitrogen at a pressure range of 25–100 kPa was measured. It has been shown the conditions for electron runaway are easily realized at voltage pulse rise time of up to 200 ns. It has been found that to measure electron beam current at minimum voltages (tens of kilovolts) and a long rise time of the voltage pulse, anodes from a grid with a small cell size should be used. It follows from this work and the results of our previous studies that the generation of a runaway electron initiates the formation of a streamer, the development of which leads to an initial drop in the voltage across the gap.
电压脉冲上升时间和空气、氮气压力对失控电子束参数的影响
研究了不同高压发生器对失控电子束的产生。在25 - 100kpa的压力范围内,测量了在空气和氮气中击穿时产生的失控电子束电流。结果表明,当电压脉冲上升时间达到200ns时,很容易实现电子失控。为了测量最小电压(几十千伏)和较长电压脉冲上升时间下的电子束电流,应使用小电池尺寸栅极的阳极。从这项工作和我们以前的研究结果来看,逃逸电子的产生引发了流光的形成,流光的发展导致了间隙上电压的初始下降。
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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