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首页> 外文期刊>IEEE Transactions on Plasma Science >Frequency and Voltage Dependence of Glow and Pseudoglow Discharges in Helium Under Atmospheric Pressure
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Frequency and Voltage Dependence of Glow and Pseudoglow Discharges in Helium Under Atmospheric Pressure

机译:大气压下氦气辉光和伪辉光放电的频率和电压依赖性

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摘要

The pseudoglow and glow discharge behavior of a 0.5-mm metallic-dielectric electrode gap in helium under atmospheric pressure was examined as a function of ac voltage between 0.3 and 32 kHz. The number of discharge current pulses per half-cycle within the pseudoglow was found to diminish with rising frequency, as opposed to the increase observed with rising voltage. The reduction in the rise time and the quasi-monotonic decreases in amplitude of the successive discrete current pulses within the pseudoglow were attributed to the enhanced Penning ionization due to an increase in the number of energetic precursors (metastables and dimers) over the first quadrant in each half cycle. The interruption in the discharge pulse sequence, caused by a change in polarity of the ac field, greatly reduced the precursors' concentration and resulted in the first incipient pulse of the pseudoglow having the shortest rise time and width in the pulse sequence. The increase in frequency at constant voltage caused a gradual decrease in the number of discharge current pulses within the pseudoglow, until at ca. 10 kHz and beyond only a single pulse glow discharge took place. The influence of argon, nitrogen, hydrogen, and oxygen impurities was studied and interpreted in terms of Penning ionization and electron attachment.
机译:研究了大气压下氦气中0.5 mm金属-电介质电极间隙的伪辉光和辉光放电行为,其是0.3至32 kHz交流电压的函数。发现伪辉光中每半个周期的放电电流脉冲数随着频率的增加而减少,这与随着电压上升而观察到的增加相反。伪辉光内连续离散电流脉冲的上升时间的减少和准单调幅度的减小归因于潘宁电离的增强,这是由于在第一象限中高能前体(可熔体和二聚体)的数量增加了。每个半周期。由交流磁场极性的变化引起的放电脉冲序列的中断极大地降低了前驱体的浓度,并导致伪辉光的第一个初始脉冲在脉冲序列中具有最短的上升时间和宽度。在恒定电压下频率的增加导致伪辉光内放电电流脉冲的数量逐渐减少,直到大约在。超过10 kHz时,仅发生一次脉冲辉光放电。研究了氩,氮,氢和氧杂质的影响,并根据潘宁电离和电子附着进行了解释。

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