Effects of impedance matching network on α–γ mode transition in atmospheric pressure RF discharges

manqiang Du, zhenfeng Ding, Liangwen Qi, Xiaodong Wen, Bin Sun
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Abstract

In atmospheric pressure radio-frequency discharges, positive and negative feedback regions are defined based on the influence of varying the capacitance of the series capacitor in an inverted L-type impedance matching network on the fed RF power at the input port of the impedance matching network. The impact of the impedance matching network on the α-γ mode transition was investigated by adjusting the tuning series capacitor in the impedance matching network. The critical RF power as well as current and voltage at the α-γ mode transition is almost independent off the impedance matching network, while the counterpart immediately after the α-γ mode transition varies remarkably. The underlying mechanism is understood in terms of different feedbacks. Positive and negative feedbacks respectively promote and suppress the increment in RF power during the α-γ mode transition.
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阻抗匹配网络对常压射频放电中 α-γ 模式转换的影响
在大气压射频放电中,正反馈区和负反馈区是根据倒 L 型阻抗匹配网络中串联电容器的电容变化对阻抗匹配网络输入端口馈入射频功率的影响而定义的。通过调整阻抗匹配网络中的调谐串联电容器,研究了阻抗匹配网络对 α-γ 模式转换的影响。α-γ模式转换时的临界射频功率以及电流和电压几乎不受阻抗匹配网络的影响,而紧随α-γ模式转换之后的临界射频功率以及电流和电压则变化很大。我们可以从不同的反馈来理解其基本机制。在 α-γ 模式转换期间,正反馈分别促进和抑制射频功率的增加。
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