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Instability of plasma plume of micro-hollow cathode discharge

机译:微空心阴极放电的等离子体羽流的不稳定性

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The micro-hollow cathode gas discharge driven by thermionic emission is studied using the two-dimensional particle-in-cell Monte Carlo collisions simulation. The electron current is extracted from the plasma plume penetrating into the keeper-anode space through a small keeper orifice from the cathode-keeper space. The results of simulations and a simplified analytical model showed that the plasma density and extracted current can exhibit deep modulation in the range of frequencies of tens of MHz. This modulation appears when the space-charge limited current between the plume boundary and the anode exceeds the plasma thermal electron current through the orifice. (C) 2015 AIP Publishing LLC.
机译:利用二维粒子内蒙特卡罗碰撞模拟研究了由热电子发射驱动的微空心阴极气体放电。通过从阴极保持器空间穿过小的保持孔,从渗透到保持器-阳极空间的等离子体羽中提取出电子电流。仿真结果和简化的分析模型表明,等离子体密度和提取的电流可以在数十MHz的频率范围内表现出深度调制。当羽流边界和阳极之间的受空间电荷限制的电流超过通过孔的等离子体热电子电流时,就会出现这种调制。 (C)2015 AIP Publishing LLC。

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