Investigation of a 200GHz microklystron driven by a small diameter pseudospark electron beam

A. Cross, H. Yin, W. He, D. Bowes, K. Ronald, A. Phelps, D. Li, J. Zhou, X. Chen, J. Protz, M. Verdiel, M. Reynolds, T. Schuhmann
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引用次数: 1

Abstract

Demands in plasma diagnostics, radiotherapy, medical research and advanced communications have in recent years resulted in the development of new radiation sources in the terahertz region (0.1 to 10THz). A klystron is one attractive choice for generation of THz radiation due to its operation mechanism, efficiency and robustness and because its structure is amenable to being scaled down in size to achieve higher frequency operation1. Due to the decrease in size as the frequency is increased, there is a need for the electron beam current density to increase in order to achieve reasonable output powers. The pseudospark (PS) discharge is an ideal electron beam source because it can produce a high current density and small diameter (≪1mm) electron beam.
小直径伪火花电子束驱动200GHz微速调管的研究
近年来,等离子诊断、放射治疗、医学研究和先进通信方面的需求导致了太赫兹区域(0.1至10THz)新辐射源的发展。速调管是产生太赫兹辐射的一个有吸引力的选择,因为它的操作机制,效率和稳健性,因为它的结构可以缩小尺寸以实现更高的频率操作1。由于电子束的尺寸随着频率的增加而减小,为了获得合理的输出功率,需要增加电子束电流密度。赝火花(PS)放电是一种理想的电子束源,因为它可以产生高电流密度和小直径(≪1mm)的电子束。
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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