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Influence of wall plasma on microwave frequency and power in relativistic backward wave oscillator

机译:相对论反向波振荡器中壁等离子体对微波频率和功率的影响

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摘要

The RF breakdown of the slow wave structure (SWS), which will lead to the generation of the wall plasma, is an important cause for pulse shortening in relativistic backward wave oscillators. Although many researchers have performed profitable studies about this issue, the influence mechanism of this factor on the microwave generation still remains not-so-clear. This paper simplifies the wall plasma with an "effective" permittivity and researches its influence on the microwave frequency and power. The dispersion relation of the SWS demonstrates that the introduction of the wall plasma will move the dispersion curves upward to some extent, which is confirmed by particle-in-cell (PIC) simulations and experiments. The plasma density and volume mainly affect the dispersion relation at the upper and lower frequency limits of each mode, respectively. Meanwhile, PIC simulations show that even though no direct power absorption exists since the wall plasma is assumed to be static, the introduction of the wall plasma may also lead to the decrease in microwave power by changing the electrodynamic property of the SWS. (C) 2015 AIP Publishing LLC.
机译:慢波结构(SWS)的RF击穿将导致壁等离子体的产生,这是相对论后向波振荡器中脉冲缩短的重要原因。尽管许多研究人员对此问题进行了有益的研究,但该因素对微波产生的影响机制仍不清楚。本文以“有效的”介电常数简化了壁等离子体,并研究了其对微波频率和功率的影响。 SWS的色散关系表明,壁等离子体的引入将使色散曲线在一定程度上向上移动,这已通过PIC(cell-in-cell)(PIC)模拟和实验得到证实。等离子体密度和体积分别主要影响每种模式的上限和下限频率下的色散关系。同时,PIC仿真显示,由于壁等离子体被假定为静态,因此即使不存在直接的功率吸收,壁等离子体的引入也可能通过改变SWS的电动力特性而导致微波功率的降低。 (C)2015 AIP Publishing LLC。

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