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Plasma modeling for a nonsymmetric capacitive discharge driven by a nonsinusoidal radio frequency current

机译:非正弦射频电流驱动的非对称电容放电的等离子体建模

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摘要

An analytical solution for the sheath dynamics of an asymmetrically driven capacitively coupled plasma is obtained under the assumptions of time-independent, collisionless ion motion, inertialess electrons, and uniform current density. Modeling is performed considering that the plasma is driven by a nonsinusoidal radio frequency (rf) current which can be resolved into a finite number of harmonic components. Together with different sheath parameters the equation for the bulk plasma impedance is also obtained to calculate the overall plasma impedance and the overall rf voltage. Assuming equal plate areas the solution for a symmetric discharge is also obtainable from this model. We have found that the even harmonic components of rf voltage and impedance are always present, even in a symmetric discharge. Experimental results are shown to be in qualitative agreement with the theoretical model. The values of normalized rf voltage and impedance harmonics assume lower values as the asymmetry of the plasma chamber decreases.
机译:在与时间无关,无碰撞离子运动,无惯性电子和均匀电流密度的假设下,获得了非对称驱动电容耦合等离子体的鞘层动力学分析解决方案。考虑到等离子体是由非正弦射频(rf)电流驱动而进行建模的,该电流可以分解为有限数量的谐波分量。与不同的护套参数一起,还获得了整体等离子体阻抗的方程式,以计算整体等离子体阻抗和整体射频电压。假设板面积相等,也可以从该模型获得对称放电的解决方案。我们发现,即使在对称放电中,射频电压和阻抗的偶次谐波分量也始终存在。实验结果表明与理论模型在质量上吻合。随着等离子体室的不对称性减小,归一化的rf电压和阻抗谐波的值取较低的值。

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