碳场发射阴极表面离子束形态调理

C. Hunt, A. Chakhovskoi, Yu Wang
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引用次数: 12

摘要

利用一种新颖的ar离子洪水轰击方法,对块状石墨、网状玻璃碳和膏状石墨薄膜在表面改性前后的场发射特性进行了评估。ar离子处理导致发射阴极表面形貌的变化,其物理上类似于使用激光或其他热源进行发射处理的结果,以及使用电流或电压应力处理方法获得的结果。发射特性变得更加均匀,表现出更少的噪音,并且,在最好的情况下,与碳纳米管或超纳米晶体金刚石阴极的结果相匹配。结果证明了一种在最佳提取电压下,从大面积、低成本阴极获得大总电流的方法。这种方法对于不需要纳米阴极结构的场发射灯和x射线管等应用非常有用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ion-beam morphological conditioning of carbon field emission cathode surfaces
Square-cm samples of bulk graphite, reticulated vitreous carbon, and paste graphite film have been evaluated for field-emission properties both before and after surface modification using a novel Ar-ion flood bombardment method. The Ar-ion treatment results in a change in surface morphology of the emission cathode which physically resembles results of emission treatments using lasers or other heat sources, as well as results obtained using current or voltage stress treatment methods. Emission properties become more uniform, exhibit less noise, and, in the best cases, match results seen from carbon nanotubes or ultra-nanocrystalline diamond cathodes. The results demonstrate a method for obtaining large total currents at optimal extraction voltages, from large-area, low-cost cathodes. This method is useful for applications, such as field-emission lamps and x-ray tubes, which do not require nanofabricated cathode structures.
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