随着纳秒级加速脉冲重复率的增加,冷石墨阴极发射特性的特殊特征

E. Litvinov, M. Yalandin, V. Shpak, S. Rukin, G. Mesyats, S. Korovin, V. Rostov
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引用次数: 2

摘要

研究了磁绝缘同轴二极管中冷石墨阴极在高达3.5 kHz脉冲重复频率(PRF)的纳秒加速脉冲作用下的发射特性。在PRF < 1 kHz时,发射衰减,在PRF ~ 3.5 kHz时,发射恢复。对爆炸电子发射(EEE)中心区域温度条件的估计表明,脉冲间隔t ~ 1ms足以使该区域冷却到300k。冷却主要是通过热传导进行的。对于t ~ 0.3 ms,余热是可观的。提出了阴极微浮雕抛光效果存在频率限制。介绍了阴极发射随PRF增大而恢复机理的实验结果。老化后的阴极显微照片,工作时的阴极照片,以及对从阴极上取下的材料的分数组成的分析表明,将阴极发射边缘的某些区域加热到石墨的熔点,在恢复发射中起着重要作用。这支持假设的主要贡献是热电子发射,因为在脉冲间隔期间,余热留在没有冷却的区域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Special Features of Emissive Characteristics of Cold Graphite Cathode with an Increase in the Repetition Rate of Nanosecond Accelerating Pulses
A study has been performed on the behavior of the emissive characteristics of a cold graphite cathode in a magnetically insulated coaxial diode under the action of nanosecond accelerating pulses at a pulse repetition frequency (PRF) of up to 3.5 kHz. Emission was observed to degrade at PRF < 1 kHz and recover at PRF ~ 3.5 kHz. Estimates of the temperature conditions in the region of an explosive electron emission (EEE) center have shown that the pulse interval t ~1 ms suffices for this region to cool down to 300 K. The cooling occurs predominantly by heat conduction. For t ~ 0.3 ms, the residual heat is substantial. It has been proposed that there exists a frequency limit for the cathode microrelief polishing effect. The results of an experiment on studying the mechanism of cathode emission recovery with increasing PRF are presented. Micrographs of the cathode taken after aging, photographs of the cathode in operation, and analyses of the fractional composition of the material removed from the cathode suggest that an important role in the recovery of emission is played by the heating of some regions of the cathode emitting edge to the melting point of graphite. This counts in favor of the hypothesized dominant contribution of thermoelectron emission to the initiation of EEE due to the residual heat remaining in regions that have not cooled off during the pulse interval.
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