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Electric field and plasma emission responses in a low pressure positive column discharge exposed to a low Mach number shock wave

机译:暴露在低马赫数冲击波下的低压正柱放电中的电场和等离子体发射响应

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摘要

Low Mach number shock waves propagating through a low pressure, nonequilibrium positive column gas discharge have been observed to experience dispersion and velocity changes. It is shown that these effects depend on discharge polarity. Optical and electrical measurements are described which show further polarity-dependent effects in discharge light emission and changes in electrical properties. Using two types of probes, electrical measurements were made of both the global changes in discharge voltage and current and time resolved local electric field changes. The measured behaviors of discharge and shock wave point to very localized triple or quadruple layer electric sheaths connected with the propagating shock wave, which provide local enhanced ionization at the shock front which can sustain the discharge, at least during the short shock propagation time. The postulated density gradient driven large local recirculation current in the potential minimum near this sheath [H. S. Maciel and J. E. Allen, J. Plasma Phys. 42, 321 (1989)] at the shock front will result in large local Joule heating, causing the shock dispersion and shock speed increase, which have been observed in many experiments. Thus, the conclusion is that the effects are due to highly localized gas heating which is facilitated by the response of the positive column plasma to the acoustic shock. (C) 2000 American Institute of Physics. [S1070-664X(00)02509-X]. [References: 24]
机译:已观察到通过低压非平衡正柱气体放电传播的低马赫数冲击波会经历色散和速度变化。结果表明,这些效应取决于放电极性。描述了光学和电学测量,其在放电光发射和电特性变化中显示出进一步的极性相关效应。使用两种类型的探针,对放电电压和电流的整体变化以及时间分辨的局部电场变化进行了电气测量。测得的放电和冲击波行为指向与传播的冲击波连接的非常局部的三层或四层电护套,这至少在较短的冲击传播时间内,在冲击前沿提供了局部增强的电离,可以维持放电。假定的密度梯度在该鞘管附近的电势最小值中驱动了较大的局部再循环电流[H。 S.Maciel和J.E.Allen,《等离子体物理学》。 42,321(1989)]在冲击前部将导致较大的局部焦耳热,从而导致冲击分散和冲击速度增加,这在许多实验中都已观察到。因此,得出的结论是,这种影响是由于高度局部的气体加热所致,而这种加热由于正柱等离子体对声震的响应而变得容易。 (C)2000美国物理研究所。 [S1070-664X(00)02509-X]。 [参考:24]

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