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High-Current Stages in a Low-Pressure Glow Discharge With Hollow Cathode

机译:空心阴极低压辉光放电中的高电流级

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This paper presents an interpretation of the dense and superdense glow discharge stages in pseudospark switch geometry. The discharge is treated as a self-organizing system that is able to rearrange itself to provide the current requested by external electric circuit. The principal discharge regions in the glow stages are the hollow-cathode plasma, the positive column plasma, and the double electric layer that separates these plasma regions. A model that allows some quantitative estimates when applied to the hollow-cathode plasma is developed, in which a generalized secondary emission coefficient that considers an external emission current is introduced. The abrupt transition from dense glow stage to superdense glow stage occurs because of microexplosions at the cathode surface and appearing the metal vapor plasma. In terms of the model, this means an abrupt increase in the secondary emission coefficient. The comparison with the experiment is made for discharges in hydrogen and xenon at a current up to several kiloamperes and at a current rise time from several microseconds to hundreds of nanoseconds. The physical reasons for the current quenching effect that manifests itself at a decreased gas pressure are also discussed.
机译:本文介绍了伪火花开关几何中的浓密和超密辉光放电阶段。放电被视为一个自组织系统,该系统能够重新排列自身以提供外部电路所需的电流。辉光阶段的主要放电区域是空心阴极等离子体,正极列等离子体和分隔这些等离子体区域的双电层。开发了一种模型,该模型在应用于空心阴极等离子体时可以进行一些定量估计,其中引入了考虑外部发射电流的广义二次发射系数。由于在阴极表面发生微爆炸并出现金属蒸气等离子体,因此发生了从密集辉光阶段到超稠密辉光阶段的突然转变。在模型方面,这意味着二次排放系数突然增加。与该实验的比较是针对氢和氙的放电,放电电流高达几千安培,电流上升时间从几微秒到几百纳秒。还讨论了由于气体压力降低而表现出的电流猝灭效应的物理原因。

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