Characterization of electron extraction from a 40.68 MHz radiofrequency inductive plasma source

Kodai Kikuchi, Kazunori Takahashi
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Abstract

An electron current is extracted from a 40.68 MHz inductively coupled plasma source, in which a grounded ion collector electrode is installed to maintain the charge neutrality, by applying a positive voltage to a metallic plate located downstream of the source. The ion collector has an exit orifice of either 20 mm or 2.2 mm in diameter, showing a larger electron extraction current for the 2.2-mm-diameter case. The result is discussed with a global model, implying a higher plasma density for the 2.2-mm-diameter case due to the increased neutral pressure in the source. Metallic and insulator exit having the 2.2-mm-diameter orifice are tested, providing a larger electron extraction current for the metallic case despite a small fraction of a change in the total ion collection area. It is speculated that the electron extraction current is affected by the ion collection near the electron extraction hole and the potential distribution.
40.68 MHz 射频感应等离子体源的电子萃取特征
通过向位于源下游的金属板施加正电压,从 40.68 MHz 感应耦合等离子体源中提取电子电流。离子收集器的出口孔直径为 20 毫米或 2.2 毫米,在直径为 2.2 毫米的情况下,电子萃取电流较大。通过全局模型对这一结果进行了讨论,结果表明直径为 2.2 毫米的情况下等离子体密度更高,这是因为源中的中性压力增加了。对具有 2.2 毫米直径孔口的金属和绝缘体出口进行了测试,尽管离子收集总面积的变化很小,但金属出口的电子萃取电流更大。据推测,电子萃取电流受到电子萃取孔附近的离子收集和电势分布的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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