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Drag coefficient of the weakly ionized plasma in the high Knudsen number regime

机译:高克努森数态下弱电离等离子体的阻力系数

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摘要

The drag force acting on a micron-sized polystyrene particle in the high Knudsen number regime is investigated. Analysis of the particle trajectories in stationary neutral argon gas environment suggests the damping time constant tau proportional to p(-1.20 +/- 0.04) and Epstein drag force coefficient delta=1.40. The neutral drag coefficient is compared with the drag coefficient measurement in dust-free plasma. The phenomena of the reduced drag in weakly viscous and weakly ionized rf plasma are also observed in this report. It is shown that the slight changes in rf power and pressure would enhance the reduced drag effect, which suggests that there is an additional electrostatic force acting along the particle motion in the plasma.
机译:研究了在高克努森数态下作用在微米级聚苯乙烯颗粒上的阻力。在静止的中性氩气环境中的粒子轨迹分析表明,阻尼时间常数tau与p(-1.20 +/- 0.04)和Epstein阻力系数delta = 1.40成正比。将中性阻力系数与无尘等离子体中的阻力系数测量值进行比较。在该报告中还观察到了弱粘性和弱电离的射频等离子体中阻力减小的现象。结果表明,射频功率和压力的细微变化将增强减小的阻力效应,这表明沿等离子体中的粒子运动存在着额外的静电力。

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