The influence of the surface structure on the behavior of arc cathode spots in vacuum

B. Juettner
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引用次数: 1

Abstract

High speed pictures of arc spots on copper cathodes in vacuum have been taken with high time and space resolution (10 ns and 3 μm, respeetively). They reveal that the spots are located at the rim of large craters, sometimes turning around the crater center with velocities in excess of 1000 d s . On a time scale of milliseconds the spots frequently come hack to their previous locations (memory effect). Supplementary experiments with aolyhdenum and tungsten cathodes show that the appearance of the spots can he controlled by small amounts of oxides and carbides, whereas high temperatures strongly reduce the probability the spot ignition. From these observations it is concluded that cold field electron emission is the base for the spot displacement even if the field appears to he relatively low.
真空中表面结构对电弧阴极斑点行为的影响
在真空条件下,以高的时间和空间分辨率(分别为10 ns和3 μm)拍摄了铜阴极上电弧点的高速照片。他们发现,这些斑点位于大型陨石坑的边缘,有时以超过1000天的速度围绕陨石坑中心旋转。在几毫秒的时间尺度上,这些斑点经常会回到它们以前的位置(记忆效应)。对钼和钨阴极的补充实验表明,少量的氧化物和碳化物可以控制斑点的出现,而高温则大大降低了斑点着火的可能性。从这些观测结果可以得出结论,即使场看起来相对较低,冷场电子发射也是光斑位移的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
0.40
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