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首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Influence of different cathode surfaces on the breakdown time delay in neon DC glow discharge (Conference Paper)
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Influence of different cathode surfaces on the breakdown time delay in neon DC glow discharge (Conference Paper)

机译:阴极直流表面对霓虹灯直流辉光放电击穿时间延迟的影响(会议论文)

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摘要

The breakdown time delay t d in neon DC glow discharge with a galvanic gold layer on the cathode is studied and compared to the measurements on the gas tube with the vacuum deposited gold layer. The influence of the different cathode surfaces is analysed by measuring the breakdown time delay as a function of the afterglow period t _d?(τ) (the memory curve) and by measuring the formative time delay dependence on working voltages t _f?(U). In the case of the galvanic gold layer the surface charges remain on the regions with reduced conductivity (cathode spots) whose presence is confirmed by scanning electron microscopy (SEM) image and energy dispersive X-ray (EDS) spectrum. The trapped charges change the cathode secondary electron yield and affect the processes of initiation and formation of gas discharge. Furthermore, it is found that deposited surface charges introduce a new mechanism of surface initiation that is manifested by double-Gaussian distributions of the formative and statistical time delay.
机译:研究了阴极直流电金层在霓虹灯直流辉光放电中的击穿时间延迟t d,并将其与在真空沉积金层的气管上的测量结果进行了比较。通过测量击穿时间延迟作为余辉周期t _d?(τ)的函数(记忆曲线)并通过测量形成时间延迟对工作电压t _f?(U)的依赖关系来分析不同阴极表面的影响。 。在电镀金层的情况下,表面电荷保留在电导率降低的区域(阴极斑点),其存在通过扫描电子显微镜(SEM)图像和能量色散X射线(EDS)光谱确认。俘获的电荷改变了阴极二次电子的产率,并影响了气体放电的引发和形成过程。此外,发现沉积的表面电荷引入了表面引发的新机制,该机制由形成和统计时间延迟的双高斯分布证明。

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