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Discharge parameters and dominant electron conductivity mechanism in a low-pressure planar magnetron discharge

机译:低压平面磁控管放电中的放电参数和主要电子传导机理

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摘要

Parameters of a discharge sustained in a planar magnetron configuration with crossed electric and magnetic fields are studied experimentally and numerically. By comparing the data obtained in the experiment with the results of calculations made using the proposed theoretical model, conclusion was made about the leading role of the turbulence-driven Bohm electron conductivity in the low-pressure operation mode (up to 1 Pa) of the discharge in crossed electric and magnetic fields. A strong dependence of the width of the cathode sputter trench, associated with the ionization region of the magnetron discharge, on the discharge parameters was observed in the experiments. The experimental data were used as input parameters in the discharge model that describes the motion of secondary electrons across the magnetic field in the ionization region and takes into account the classical, near-wall, and Bohm mechanisms of electron conductivity.
机译:实验和数值研究了在平面磁控管配置中具有交叉电场和磁场的情况下维持的放电参数。通过将实验中获得的数据与使用所提出的理论模型进行的计算结果进行比较,得出了湍流驱动的玻姆电子电导率在低压运行模式(最高1 Pa)中的主导作用的结论。在交叉的电场和磁场中放电。在实验中观察到与磁控管放电的电离区域相关的阴极溅射沟槽宽度的强烈依赖关系。实验数据在放电模型中用作输入参数,该模型描述了二次电子在电离区域中穿过磁场的运动,并考虑了电子传导率的经典,近壁和Bohm机制。

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