Particle and power balances of hot-filament discharge plasmas in a multi-dipole device in the presence of a positively biased electrode

M. Cho, N. Hershkowitz, T. Intrator
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Abstract

The plasma potential is typically assumed to float above an anode potential by an amount that is a few times the electron temperature (T/sub e//e). The difference between the plasma potential and the anode potential can be estimated by considering the particle production and loss. However, it has been reported experimentally that the plasma potential of a steady-state plasma can be more negative than the anode potential with a potential dip ( approximately T/sub e//e) in front of the anode. Particle and power balances have been carried out to estimate the bulk plasma potential of a hot-filament discharge plasma produced in a multidipole plasma device. The bulk plasma potential dependence on the positive DC bias applied to the anode is analyzed, and the predicted characteristics of the plasma potential dependence are compared to the experimental results. A steady-state potential dip in front of the anode has been experimentally observed using emissive probes with the zero emission inflection point method, and the conditions for the potential dip formation have been derived.<>
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多偶极装置中存在正偏压电极时热丝放电等离子体的粒子和功率平衡
通常假设等离子体电位高于阳极电位的幅度是电子温度的几倍(T/sub e//e)。等离子体电位和阳极电位之间的差异可以通过考虑粒子的产生和损失来估计。然而,据实验报道,稳态等离子体的等离子体电位可以比阳极电位更负,在阳极前方有一个电位倾角(约为T/sub e//e)。在多偶极子等离子体装置中,对热丝放电等离子体的体势进行了粒子和功率平衡估计。分析了等离子体电势对阳极正直流偏压的依赖关系,并将预测的等离子体电势依赖特性与实验结果进行了比较。利用零发射拐点法,用发射探针实验观察了阳极前方的稳态电位倾降,并推导了电位倾降形成的条件
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