原子物理学
等离子体
电子
材料科学
容性耦合等离子体
电压
温度电子
蒙特卡罗方法
带电粒子
氧气
化学
电子冷却
粒子(生态学)
离子
振幅
温度测量
二次排放
分析化学(期刊)
分子物理学
阴极
阴极射线
氩
等离子体诊断
作者
J. T. Gudmundsson,D. I. Snorrason
摘要
We use the one-dimensional object-oriented particle-in-cell Monte Carlo collision code oopd1 to explore the charged particle densities, the electronegativity, the electron energy probability function, and the electron heating mechanism in a single frequency capacitively coupled oxygen discharge, when the applied voltage amplitude is varied. We explore discharges operated at 10 mTorr, where electron heating within the plasma bulk (the electronegative core) dominates, and at 50 mTorr, where sheath heating dominates. At 10 mTorr, the discharge is operated in a combined drift-ambipolar and α-mode, and at 50 mTorr, it is operated in the pure α-mode. At 10 mTorr, the effective electron temperature is high and increases with increased driving voltage amplitude, while at 50 mTorr, the effective electron temperature is much lower, in particular, within the electronegative core, where it is roughly 0.2–0.3 eV, and varies only a little with the voltage amplitude.
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