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Propagation of sound in glow discharge plasma

机译:辉光放电等离子体中的声音传播

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摘要

Propagation of sound in a medium where the rate of local heat addition is a function of gas density is analysed theoretically and the results are applied for modelling the experimentally observed effect of amplification of acoustic waves by an extended glow discharge in air. The model adequately describes the experimental dependences of the gain on the wave frequency and discharge power density and predicts that the amplification of sound by an unconfined glow discharge in air increases with discharge current density but does not change noticeably with gas pressure when the current density is kept constant. Quantitative estimates indicate that a gain of as high as 1 m-1 (or 9 dB for a 60 dB wave passing through 1 m of plasma) could be realized using a discharge in air with a current density of 100 mA cm-2.
机译:从理论上分析了局部热添加速率是气体密度的函数的介质中的声音传播,并将结果用于模拟实验观察到的通过空气中长时间辉光放电对声波的放大效应。该模型充分描述了增益对波频率和放电功率密度的实验依赖性,并预测空气中无限制辉光放电对声音的放大随着放电电流密度的增加而增加,而当电流密度为2时,气压不会明显改变。保持不变。定量估计表明,使用空气密度为100 mA cm-2的空气放电可以实现高达1 m-1的增益(对于通过1 m等离子体的60 dB波为9 dB)。

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