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Effect of the cathode material on the amplitude of the ultrashort avalanche electron beam in atmospheric-pressure air

机译:阴极材料对常压空气中超短雪崩电子束振幅的影响

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Generation of ultrashort avalanche electron beam (UAEB) during subnanosecond breakdown in atmospheric-pressure air is investigated with a picosecond time resolution. The signals of incident and reflected voltage waves measured in the transmission line of the SLEP-150M generator have made it possible to reconstruct the voltage in the electrode gap. It is found that due to an increase in the gap voltage in the case of a stainless steel conical electrode, the UAEB amplitude is larger than for identical electrodes made of copper and aluminum. It is shown that the UAEB duration and amplitude increase when the conical electrode is replaced by a tubular electrode.
机译:研究了皮秒级时间分辨率在大气压空气中亚纳秒击穿过程中超短雪崩电子束(UAEB)的产生。在SLEP-150M发生器的传输线中测得的入射电压波和反射电压波信号使重建电极间隙中的电压成为可能。已经发现,由于在不锈钢圆锥形电极的情况下间隙电压的增加,UAEB的幅度大于铜和铝制成的相同电极的UAEB幅度。结果表明,当用管状电极代替圆锥形电极时,UAEB持续时间和幅度都会增加。

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