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Low-pressure low-frequency inductive discharge with ferrite cores for large-scale plasma processing

机译:具有铁氧体芯的低压低频电感放电,用于大型等离子加工

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Electrophysical characteristics of a low-frequency (100 kHz) low-pressure (10-100 Pa) argon inductive discharge with ferrite cores have been investigated for discharge currents of 1-50 A, discharge chamber diameter of 230 mm. The dependencies of electric field strength on the argon pressure and discharge current were measured. Radial profiles of electron density and temperature were determined with double electric probes. Experimental results were compared with numerical results obtained by a self-consistent kinetic model of the low-frequency ICP, based on the simultaneous solution of a non-local Boltzmann equation for electron energy distribution function and balance equations for the metastable argon atoms density and gas temperature. Comparison of numerical and experimental results is presented.
机译:已经研究了低频(100kHz)低压(10-100Pa)氩气电感放电的电神法特性,用于排出1-50a,排出室直径为230mm的放电电流。测量了电场强度对氩气压和放电电流的依赖性。用双电探针测定电子密度和温度的径向谱。将实验结果与通过低频ICP的自我一致动力学模型获得的数值结果进行了比较,基于电子能量分布函数的非本地Boltzmann方程的同时解和亚稳氩原子密度和气体的平衡方程温度。提出了数值和实验结果的比较。

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