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首页> 外文期刊>Japanese journal of applied physics >Analysis of gas discharge characteristics across micro-gap under different pressures
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Analysis of gas discharge characteristics across micro-gap under different pressures

机译:在不同压力下微隙气体放电特性分析

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To study the process of micro-gap gas discharge under different pressures, the experimental of the micro-discharges for the gaps ranging from 1 to 100 mu m under 1-100 kPa is presented and the results are discussed. The curves of breakdown voltage with the pd value at different gaps are drawn and there are multiple breakdown voltages under the same pd value. As the decrease of the gaps, the deviation between the breakdown curve and the traditional Paschen curve increases when the electrode distance is less than 100 mu m and the pd value is less than about 80 Pa center dot cm. The breakdown field strength and the ratio of effective secondary coefficient of field emission to Townsend's secondary coefficient are estimated at different pressures and different electrode gaps. The ion-enhanced field effect has been found to play an important role in field emission in several microns of electrode gaps.
机译:为了研究不同压力下微间隙气体放电的过程,提出了在1-100kPa下的1至100μm下的间隙的微放电的实验,并讨论了结果。 绘制了在不同间隙处具有PD值的击穿电压的曲线,并且在相同的PD值下存在多个击穿电压。 随着间隙的降低,当电极距离小于100μm时,击穿曲线和传统的paschen曲线之间的偏差增加,并且Pd值小于约80Pa中心点Cm。 在不同的压力和不同电极间隙下估计了镇静场强度和城市发射的有效次要系数与城镇的次要系数的比率。 已经发现离子增强的场效应在几微米电极间隙中在场发射中起着重要作用。

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