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Excitation of ion rarefaction waves in a low pressure plasma by applying a short high negative voltage pulse

机译:通过施加短的高负电压脉冲来激发低压等离子体中的离子稀疏波

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The ion rarefaction response to a high negative voltage pulse (U_0 kT_e/e) applied to a metal plate immersed in a low pressure argon plasma, for time duration lower than ion plasma period, is experimentally examined. In the present experiment the pulse duration is kept intermediate between the ion and electron plasma response times. Such a pulse duration is chosen so that ions are collectively undisturbed and, according to general understanding, no force is given to ions. Hence no ion rarefaction wave should be excited. But contrary to the general understanding, excitation of a rarefaction wave is observed. The results indicate that the speed of the rarefaction waves for various conditions (like plasma density, applied pulse magnitude, and pulse duration) is supersonic. After a distance from the exciter (biased plate), typically three-fourth of the exciter diameter, the rarefaction waves are turned into ion acoustic waves. The experimental results indicate that even though the bias durations are shorter than the ion plasma period, if the bias magnitude is large enough, some collective plasma behavior can still be excited.
机译:实验研究了对施加到浸入低压氩等离子体中的金属板上的高负电压脉冲(U_0 kT_e / e)的离子稀疏响应,其持续时间低于离子等离子体周期。在本实验中,脉冲持续时间保持在离子和电子等离子体响应时间之间。选择这样的脉冲持续时间以使离子总体上不受干扰,并且根据一般理解,不对离子施加力。因此,不应激发离子稀疏波。但是与一般理解相反,观察到稀疏波的激发。结果表明,在各种条件下(如等离子体密度,施加的脉冲幅度和脉冲持续时间),稀疏波的速度是超音速的。与激振器(偏置板)相距一段距离(通常为激振器直径的四分之三)后,稀疏波变成离子声波。实验结果表明,即使偏置持续时间短于离子等离子体周期,但如果偏置幅度足够大,仍然可以激发某些集体等离子体行为。

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