Liu Lie, Li Limin, Wen Jianchun, Wan Hong
College of Photoelectric Science and Engineering, National University of Defense Technology, Changsha 410073, People's Republic of China.
Rev Sci Instrum. 2009 Feb;80(2):023303. doi: 10.1063/1.3086728.
This paper presents the construction of carbon-fiber-aluminum (CFA) cathode by squeezing casting and its applications for generating high-current electron beams to drive high-power microwave sources. The fabrication process avoided using epoxy, a volatile deteriorating the vacuum system. These cathodes had a higher hardness than conventional aluminum, facilitating machining. After surface treatment, carbon fibers became the dominator determining emission property. A multineedle CFA cathode was utilized in a triode virtual cathode oscillator (vircator), powered by a approximately 450 kV, approximately 400 ns pulse. It was found that 300-400 MW, approximately 250 ns microwave was radiated at a dominant frequency of 2.6 GHz. Further, this cathode can endure high-current-density emission without detectable degradation in performance as the pulse shot proceeded, showing the robust nature of carbon fibers as explosive emitters. Overall, this new class of cold cathodes offers a potential prospect of developing high-current electron beam sources.
本文介绍了通过挤压铸造法制造碳纤维铝(CFA)阴极及其在产生高电流电子束以驱动高功率微波源方面的应用。制造过程避免使用环氧树脂,因为这种挥发性物质会使真空系统恶化。这些阴极的硬度高于传统铝阴极,便于加工。经过表面处理后,碳纤维成为决定发射性能的主要因素。一种多针CFA阴极被应用于由约450 kV、约400 ns脉冲供电的三极管虚阴极振荡器(vircator)中。结果发现,在2.6 GHz的主导频率下辐射出了300 - 400 MW、约250 ns的微波。此外,随着脉冲发射的进行,这种阴极能够承受高电流密度发射,且性能无明显退化,这表明碳纤维作为爆炸发射体具有强大的性能。总体而言,这类新型冷阴极为开发高电流电子束源提供了潜在的前景。