产生辉光放电等离子体的聚合物的反馈控制

N. Hershkowitz, M. Cho, J. Pruski, J. Dekock, P. Anderson
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引用次数: 0

摘要

辉光放电是在使用丙烯或氩气的传统平行板装置中产生的。丙烯放电与氩放电的不同之处在于聚合物在等离子体边界处连续沉积。等离子体密度约为10/sup 9/ cm/sup -3/, T/sub - e/约=3 eV,在约300 mr的中性压力下,在约100 kHz的射频频率下产生放电。该装置由两个平行板(直径=7.5 cm,间距约5 cm)组成。Langmuir探针的电流-电压(I-V)特性是用加热的网状探针监测的。PC每30秒监测一次I-V特性,并调整辉光放电射频放大器的增益,以在墙壁条件等变化时保持所需的I-V特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Feedback control of a polymer producing glow discharge plasma
Glow discharges are produced in a conventional parallel-plate device using either propylene or argon. The propylene discharge differs from the argon discharge in that polymers are continuously deposited at the plasma boundaries. Discharges with plasma densities of approximately 10/sup 9/ cm/sup -3/, T/sub e/ approximately=3 eV are produced at neutral pressures of approximately 300 mtorr at RF frequencies of approximately 100 kHz. The device consists of two parallel plates (diameter=7.5 cm, separation approximately 5 cm). Langmuir probe current-voltage (I-V) characteristics are monitored with a heated mesh probe. A PC monitors the I-V characteristic every 30 s and adjusts the gain of the glow discharge RF amplifier to maintain a desired I-V characteristic as wall conditions, etc. change.<>
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