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Time resolved evolution of runaway nanosecond discharge in air and He gases

机译:时间分辨空气和氦气中失控的纳秒放电的演变

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Pa. Discharge was initiated by application of high-voltage (HV) pulse with amplitude up to 160 kV and duration of 5 ns at Full Width at Half Maximum, to a blade shaped stainless steel cathode. Experimental results show that while the first stage of the discharge, i.e. the stage in which initial plasma channel is formed in the gap is similar in both gases, further development differs a lot. Namely, it was shown that the later development of the discharge in He is influenced by formation of explosive emission centers on the edge of the cathode, which apparently is favored in He.
机译:Pa。放电是通过将幅值高达160 kV的高压(HV)脉冲以半最大值全宽施加5 ns的持续时间到叶片形不锈钢阴极上而开始的。实验结果表明,虽然放电的第一阶段,即在间隙中形成初始等离子体通道的阶段在两种气体中是相似的,但进一步的发展却有很大的不同。即,显示出在He中放电的后期发展受到在阴极边缘上爆炸发射中心的形成的影响,这显然在He中是有利的。

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