Determination of the particles involved in anode initiated vacuum breakdown using a 1-MV, 50-Nanosecond pulse generator

R. Allen, D. Hinshelwood, S. Jackson, P. Ottinger, I. Rittersdorf, J. Schumer
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Abstract

Several experiments have shown that the anode initiates breakdown of vacuum gaps in cases where the anode and cathode field enhancements are approximately equal [1]. The previous understanding was that only explosive emission at the cathode initiates breakdown between metal electrodes in vacuum with nanosecond pulses. Past experiments have shown clear evidence of particles from the anode initiating breakdown when the cathode was not specially roughened or treated to increase field enhancement. However, the type of particles coming from the anode was not known. Now, we have measurements from a specially designed anode-cathode structure that has allowed us to capture these particles. CR-39 film was used as a particle detector. A Thomson parabola and also a Kimfol filter allowed us to determine the particle species.
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用1毫伏50纳秒脉冲发生器测定阳极引发真空击穿的微粒
一些实验表明,在阳极和阴极场增强近似相等的情况下,阳极会引发真空间隙的击穿[1]。以前的理解是,只有在阴极爆炸发射才会引发真空中金属电极之间的击穿,并产生纳秒脉冲。过去的实验清楚地表明,当阴极没有经过特殊的粗化或处理以增加磁场增强时,阳极的颗粒会引发击穿。然而,来自阳极的颗粒类型尚不清楚。现在,我们通过一种特殊设计的阳极-阴极结构进行测量,使我们能够捕获这些粒子。采用CR-39薄膜作为粒子探测器。汤姆逊抛物线和金弗尔滤波器使我们能够确定粒子的种类。
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