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Observation of nonthermal turbulent electric fields in a nanosecond plasma opening switch experiment

机译:纳秒等离子体打开开关实验中非热湍流电场的观察

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Nonthermal turbulent electric fields due to plasma instabilities were studied in a 100-ns duration plasma opening switch using observations of hydrogen line spectral profiles. The H-alpha and H-beta widths were seen to rise by 2-3 times during the current pulse, shown to result from the presence of nonthermal electric fields in the plasma. The spectral profiles are analyzed using two recently developed methods based on short and intermediate time behaviors of the line profile Fourier transforms. One method gives the mean amplitude of the nonthermal fields with no dependence on their frequencies. The second method uses calculations of the autocorrelation functions for various field amplitudes and frequencies to yield bounds on these two parameters. The field amplitude is determined to be 14.5+/-2.5 kV/cm, and the fluctuation frequency is found to be of the order of the electron plasma frequency. Based on their high frequency, the oscillations probably result from Langmuir waves, driven by the voltage drop on the plasma opening switch (POS). The waves have no significant effect on the POS operation. since they do not give rise to anomalous resistivity, and therefore have no effect on the magnetic-field evolution. We obtain an upper limit for the amplitude of possible low-frequency fields (ion-acoustic waves), that may give rise to anomalous resistivity, and estimate the resulting diffusion velocity and current channel width. Both quantities are found to be much lower than the values observed in the experiment, and the low-frequency field amplitude is much lower than the saturation limit predicted by previous theoretical treatments. This implies that in our experiment possible low-frequency waves have little influence on the magnetic-field distribution. [S1063-651X(99)08901-1]. [References: 65]
机译:在100 ns持续时间的等离子打开开关中,使用氢谱线谱图观察了由于等离子不稳定性引起的非热湍流电场。在电流脉冲期间,可以看到H-alpha和H-beta宽度增加了2-3倍,这是由于等离子体中存在非热电场而导致的。使用基于线轮廓傅里叶变换的短时和中时行为的两种最新开发的方法来分析光谱轮廓。一种方法给出了非热场的平均幅度,而与它们的频率无关。第二种方法使用各种场振幅和频率的自相关函数的计算来得出这两个参数的界限。场振幅被确定为14.5 +/- 2.5kV / cm,并且发现波动频率为电子等离子体频率的量级。基于它们的高频,振荡可能是由等离子打开开关(POS)上的电压降驱动的Langmuir波引起的。这些波对POS操作没有重大影响。因为它们不会引起反常的电阻率,因此对磁场的演化没有影响。我们为可能的低频场(离子声波)的振幅获取了一个上限,该上限可能会导致电阻率异常,并估计由此产生的扩散速度和电流通道宽度。发现这两个量都比实验中观察到的值低得多,低频场幅度远低于以前的理论处理所预测的饱和极限。这意味着在我们的实验中,可能的低频波对磁场分布的影响很小。 [S1063-651X(99)08901-1]。 [参考:65]

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