Studies on Radial Three-Cavity Coaxial Virtual Cathode Oscillator

Xiong Luo, C. Liao, F. Meng
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Abstract

A new radial three-cavity structure of the coaxial virtual cathode oscillator is proposed and studied numerically in this paper. Using the radial three-cavity structure, the beam-wave conversion efficiency is enhanced by modulating the E-field in the beam-wave interaction area, whereas the resonator composed of the radial three-cavity configuration and the mesh anode helps restrain mode competition efficiently. Also, the output microwave power is improved by the coaxial extraction structure in respect that it benefits the energy extraction and it can also absorb the used electrons entering into the drifting tube. With an electron beam of 400 kV and 50 kA, a peak instantaneous power about 6 GW is achieved by simulation at 4.14 GHz. The peak period-averaged power reaches 2.45 GW and the beam-wave conversion efficiency is about 12%. The output microwave has high mode purity and narrow bandwidth.
径向三腔同轴虚阴极振荡器的研究
本文提出了一种径向三腔同轴虚拟阴极振荡器结构,并对其进行了数值研究。采用径向三腔结构,通过调制波束相互作用区域的电场来提高波束转换效率,而由径向三腔结构和网状阳极组成的谐振腔则有助于有效地抑制模式竞争。同轴抽吸结构提高了输出微波功率,既有利于能量抽吸,又能吸收进入漂移管的废电子。在400 kV、50 kA的束流条件下,在4.14 GHz频率下,仿真得到了约6 GW的峰值瞬时功率。峰值周期平均功率达到2.45 GW,波束转换效率约为12%。输出的微波具有高模式纯度和窄带宽。
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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