Modes of runaway electron beams during formation of diffuse discharges in air and nitrogen

V. Tarasenko, D. Beloplotov, D. Sorokin, E. Baksht
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Abstract

Investigations of the generation of runaway electron beams (REs) and the for-mation of diffuse discharges during breakdown of gaps with a cathode, which has a small radius of curvature, have been carried out. In air and nitrogen at elevated pressure, based on the registration and analysis of the characteristics of radiation from discharge, as well as parameters of the RE beam current and dynamic dis-placement current, it is shown that, depending on the conditions (E/N, gas type and its pressure, design and material of the cathode, amplitude and front of the voltage pulse), diffe- rent modes of generation of runaway electron beams are realized. It was found that the ratio of the velocity of the front of the ionization wave (streamer) and the runaway electrons, as well as the design of the cathode and the delay time before the explosion of cathode microinhomogeneities, significantly affect the generation of runaway electrons. The conditions for the realization of various modes are de-termined; oscillograms of the beam current pulses and photographs of the glow of the gap are presented.
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在空气和氮气中漫射放电形成过程中失控电子束的模式
研究了小曲率半径阴极击穿间隙时逃逸电子束的产生和漫射放电的形成。在高压空气和氮气条件下,通过对放电辐射特性的记录和分析,以及电子束电流和动态位移电流的参数,表明根据不同的条件(E/N、气体类型及其压力、阴极的设计和材料、电压脉冲的幅值和前端),可以实现不同的失控电子束产生模式。研究发现,离子波前端速度与失控电子的比值、阴极的设计以及阴极微不均匀性爆炸前的延迟时间对失控电子的产生有显著影响。确定了实现各种模式的条件;给出了光束电流脉冲的示波图和间隙发光的照片。
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