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Dust-acoustic waves driven by an ion-dust streaming instability in laboratory discharge dusty plasma experiments

机译:实验室排放粉尘等离子体实验中由离子粉尘流不稳定性驱动的粉尘声波

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Dust acoustic waves (DAWs) are spontaneously excited in dusty plasmas produced in dc and rf discharge plasmas over a wide range of plasma and dust conditions. A common feature of these plasmas is the presence of an ion drift relative to the dust, which is driven by an electric field, Eo in the discharge. Using a three fluid model of the DAWs, including the zero order electric field and collisions of all species with the background neutral gas (pressure Po), DAW stability curves were obtained in the Eo-Po plane, for various dust and wave parameters. The (Eo ,Po) data points from several experiments in which DAWs have been observed are also shown in comparison with the theoretical stability boundaries. This analysis supports the conclusion that the DAWs are excited by an ion-dust streaming instability.
机译:在宽范围的等离子体和粉尘条件下,在直流和射频放电等离子体中产生的粉尘等离子体中会自发激发粉尘声波(DAW)。这些等离子体的共同特征是存在相对于灰尘的离子漂移,该离子漂移是由放电中的电场Eo驱动的。使用包括零阶电场和所有物种与背景中性气体(压力Po)的碰撞在内的DAW的三种流体模型,在Eo-Po平面上获得了针对各种尘埃和波参数的DAW稳定性曲线。与理论上的稳定性边界相比较,还显示了一些实验中的(Eo,Po)数据点,其中观察到了DAW。该分析支持以下结论:DAW受离子粉尘流的不稳定性激发。

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