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Pulsed Nanosecond Breakdown of a Hollow Cathode Discharge With Pseudospark Geometry

机译:具有伪火花几何形状的空心阴极放电的脉冲纳秒击穿

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This paper reports the experimental results from the appearance of three discharge modes in a special geometry as a function of applied negative voltage pulses. The geometry is a four-gap pseudospark one with a gap distance of 4 mm, a metallic hollow cathode, and an anode. The applied pulsed voltage varies from −20 to −80 kV. The pulse shape is a rectangular one with a pulsewidth of 50 ns and a rise time of 4 ns. There is no breakdown at kV, and at kV, a pseudospark discharge starts, which transforms at kV into a surface discharge. The working gas is dry air at a constant pressure of 13 Pa. Using these parameters, electric field simulations of the triple point junctions are conducted and time-integrated pictures of the different discharge modes are presented. When the gas pressure is increased from 13 to 35 Pa, the voltage range of the pseudospark discharge mode grows from 13 to 65 kV.
机译:本文报告了三种放电模式在特殊几何形状下的外观所产生的实验结果,该模式是所施加负电压脉冲的函数。几何形状是四间隙伪火花,间隙距离为4 mm,具有金属空心阴极和阳极。施加的脉冲电压在-20至-80 kV之间变化。脉冲形状为矩形,脉冲宽度为50 ns,上升时间为4 ns。在kV时没有击穿,在kV时开始出现伪火花放电,该放电在kV时转换为表面放电。工作气体是恒定压力为13 Pa的干燥空气。使用这些参数,进行了三点结的电场模拟,并给出了不同放电模式的时间积分图。当气压从13 Pa增加到35 Pa时,假火花放电模式的电压范围从13 kV增加到65 kV。

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