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Characterization of a radio frequency hollow electrode discharge at low gas pressures

机译:低气压下射频空心电极放电的特性

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A radio frequency (RF) hollow discharge configuration is presented, which makes use of a combination of RF plasma generation and the hollow cathode effect. The system was especially designed for the treatment of nanoparticles, plasma polymerization, and nanocomposite fabrication. The process gas streams through the plasma in the inner of the cylindrical electrode system. In the here presented measurements, pure argon and argon with oxygen admixtures are exemplarily used. The discharge is characterized by probe measurements in the effluent, electrical measurements of the discharge parameters, and visual observations of the plasma glow. It is found that the RF fluctuations of the plasma potential are weak. The plasma potential resembles the one of a DC hollow cathode discharge, the RF hollow electrode acts as a cathode due to the self-bias, and a high voltage sheath forms in its inner cylinder. (C) 2015 AIP Publishing LLC.
机译:提出了一种射频(RF)空心放电配置,该配置结合了RF等离子体生成和空心阴极效应。该系统专门设计用于纳米粒子的处理,等离子体聚合和纳米复合材料的制造。工艺气体流过圆柱形电极系统内部的等离子体。在这里提出的测量中,示例性地使用纯氩气和带有氧气混合物的氩气。放电的特征是废水中的探针测量,放电参数的电学测量以及等离子辉光的肉眼观察。发现等离子体电势的RF波动很小。等离子体电势类似于DC空心阴极放电之一,RF空心电极由于自偏压而充当阴极,并且在其内部圆柱体中形成高压护套。 (C)2015 AIP Publishing LLC。

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