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Simulations of a two-stream backward-wave oscillator with a slot-hole structure
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作者 shi zong-jun Tang Xiao-Pin +2 位作者 Yang Zi-Qiang Lan Feng Liang Zheng 《Chinese Physics B》 SCIE EI CAS CSCD 2012年第1期518-523,共6页
We study a two-stream backward-wave oscillator with a slot-hole structure at short millimeter waves with the help of a three-dimensional particle-in-cell simulation. In order to increase the interaction region of the ... We study a two-stream backward-wave oscillator with a slot-hole structure at short millimeter waves with the help of a three-dimensional particle-in-cell simulation. In order to increase the interaction region of the electron beam, the efficiency and the output power, a slot-hole loaded rectangular waveguide structure used as the high-frequency system is proposed. Based on the mechanism of the backward-wave oscillator, a slow-wave oscillator with a frequency of 0.14 THz is designed. The simulations show that the output power and the efficiency of the oscillator can be enhanced due to the coupling between the two beams through the slot holes. The interaction efficiency is 5.18%, and the starting current density is below 5 A. cm^-2 for the two beams. These attractive results indicate that, based on the two-stream backward-wave oscillator, we can get short millimeter wave sources with high power and low current density. 展开更多
关键词 slot-hole structure short millimeter wave two-stream backward-wave oscillator
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