Breakdown modes of capacitively coupled plasma: I. Transitions from glow discharge to multipactor

Hao Wu, Ran An, Dong Zhong, Wei Jiang and Ya Zhang
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Abstract

This paper is the first in a two-part series that simulates the breakdown modes of capacitively coupled plasmas (CCPs) across various pressures using an implicit particle-in-cell/Monte Carlo collision model. The study identifies several discharge modes in the lower pressure region, including three self-sustained discharges: glow discharge, normal multipactor, and abnormal multipactor, as well as various non-self-sustained discharges. This part focuses on the formation and transitions of self-sustained modes, specifically detailing how the glow discharge transitions into an abnormal multipactor below 2 mTorr, which then evolves into a normal multipactor within a narrow voltage range. The characteristics and formation processes of these self-sustained discharges are explored, emphasizing their reliance on higher electron emission rates and high-frequency RF power. The emergence of multipactor discharges in the 60 MHz range potentially expands the gas discharge theory and broadens the application scope of CCPs.
电容耦合等离子体的击穿模式: I. 从辉光放电到多反应器的过渡
本文是两部分系列论文中的第一篇,利用隐式粒子-电池/蒙特卡洛碰撞模型模拟了电容耦合等离子体(CCP)在不同压力下的击穿模式。该研究确定了低压区的几种放电模式,包括三种自持放电:辉光放电、正常多反应器和异常多反应器,以及各种非自持放电。这部分主要介绍自持放电模式的形成和转变,特别是详细说明辉光放电如何在 2 mTorr 以下转变为异常多相,然后在狭窄的电压范围内演变为正常多相。我们探讨了这些自持放电的特征和形成过程,强调了它们对较高电子发射率和高频射频功率的依赖。在 60 MHz 范围内出现的多反应器放电可能会扩展气体放电理论,并扩大 CCP 的应用范围。
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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