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A technique for evaluating the RF voltage across the electrodes of a capacitively-coupled plasma reactor

机译:一种评估电容耦合等离子体反应器电极两端RF电压的技术

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We propose a new technique for evaluating the RF voltage across the electrodes of low-pressure capacitively-coupled plasma reactors when direct measurements are not possible. It is based on determining the coordinates of the turning point in the RF breakdown curve and using known values of the electron drift velocity for the gas. The results are in good agreement with those obtained by direct measurements at the driven electrode. Furthermore it allows RF breakdown curves to be determined for different frequencies, giving results that are physically reasonable (coincidence of right-hand branches) and in agreement with other published results. The technique for determining RF voltage we proposed is valid when there is no discharge plasma between electrodes (e.g., before gas breakdown), as well as for negligibly small discharge currents (before extinction of the weak-current discharge mode).
机译:当不可能进行直接测量时,我们提出了一种新技术,用于评估低压电容耦合等离子体反应器的电极两端的RF电压。它基于确定RF击穿曲线中转折点的坐标并使用气体的电子漂移速度的已知值。结果与在驱动电极上直接测量获得的结果非常一致。此外,它还可以确定不同频率的RF击穿曲线,从而得出在物理上合理的结果(右手分支的重合)并与其他已发布的结果一致。当电极之间没有放电等离子体时(例如在气体击穿之前),并且对于可忽略的小放电电流(在弱电流放电模式消失之前),我们提出的确定RF电压的技术是有效的。

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