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Study of nanometric thin pyrolytic carbon films for explosive electron emission cathode in high-voltage planar diode

机译:高压平面二极管爆炸电子发射阴极用纳米级热解碳薄膜的研究

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We report on an experimental study of explosive electron emission properties of cathode made by nanometric thin pyrolytic carbon (PyC) films (2-150 nm) deposited on Cu substrate via methane-based chemical vapor deposition. High current density at level of 300 A/cm(2) in 5 . 10(-5) Pa vacuum has been observed together with very stable explosive emission from the planar cathode. The Raman spectroscopy investigation proves that the PyC films remain the same after seven shots. According to the optical image analysis of the cathode before and after one and seven shots, we conclude that the most unusual and interesting feature of using the PyC films/Cu cathode for explosive emission is that the PyC layer on the top of the copper target prevents its evaporation and oxidation, which leads to higher emission stability compared to conventional graphitic/Cu cathodes, and therefore results in longer working life. (C) 2014 Elsevier B.V. All rights reserved.
机译:我们报告了通过甲烷基化学气相沉积在铜基板上沉积的纳米薄热解碳(PyC)薄膜(2-150 nm)制成的阴极爆炸电子发射特性的实验研究。高电流密度,水平为300 A / cm(2)in 5。观察到10(-5)Pa真空以及从平面阴极发出的非常稳定的爆炸物。拉曼光谱研究证明,经过7次拍摄,PyC膜仍保持不变。根据一枪和七枪前后阴极的光学图像分析,我们得出结论,使用PyC膜/ Cu阴极进行爆炸发射的最不寻常和最有趣的特征是,铜靶顶部的PyC层可以防止它的蒸发和氧化,与传统的石墨/铜阴极相比,具有更高的发射稳定性,因此,使用寿命更长。 (C)2014 Elsevier B.V.保留所有权利。

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