利用波纹金属结构的大功率慢波电子回旋脉泽的实验演示

K. Minami, K. Ogura, K. Kurashina, W. Kim, T. Watanabe
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引用次数: 0

摘要

基于电子回旋共振(ECR)的高功率微波源(如回旋管)是快波器件,而垂直于引导磁场的电子束速度分量是高功率微波源的来源。基于切伦柯夫机制的HPM源是慢波器件,可以由无初始垂直速度的光束驱动。本文的实验结果似乎是高功率慢波电子回旋脉塞(ECM)的第一次演示,该慢波电子回旋脉塞是由具有优势平行速度的光束驱动的大直径正弦波纹金属波导组成的。慢波结构的设计尺寸参数为:平均半径30 mm,波纹节距3.4 mm,振幅h = 1.7 mm,总长度238 mm。他们在实验中使用了半径26.3毫米、能量55kev、电流200a的环形光束。TM01模式的期望切伦科夫振荡频率为20ghz。观测到的高功率微波可以用反常多普勒慢回旋波正反馈增强的切伦科夫机制的后向波振荡定量解释。总之,本文提出的慢波ECM将是一个有竞争力的候选,用于产生更多聚变等离子体研究中可用的多兆瓦毫米波微波。«少
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Demonstration Of A High-power Slow Wave Electron Cyclotron Maser Utilizing Corrugated Metal Structure
High-power microwave (HPM) sources based on electron cyclotron resonance (ECR) such as gyrotrons are fast wave devices and velocity component of electron beam perpendicular to guiding magnetic field is the origin of HPM. HPM sources based on Cherenkove mechanism are slow wave devices and can be driven by a beam without initial perpendicular velocity. The authors present here the experimental result that seems to be the first demonstration of high-power slow wave electron cyclotron maser (ECM) consisting of a large diameter sinusoidally corrugated metal waveguide driven by a beam with predominant parallel velocity. The designed size parameters of slow wave structure (SWS) are as follows: average radius 30 mm, corrugation pitch 3.4 mm, its amplitude h = 1.7 mm and total length 238 mm. They use an annular beam with radius 26.3 mm, energy 55 keV, current 200 A in their experiment. Expected Cherenkov oscillation frequency of TM01 mode is 20 GHz. The observed high-power microwaves can be quantitatively explained by a backward wave oscillation with Cherenkov mechanism enhanced by positive feedback of anomalous Doppler slow cyclotron wave. In conclusion, the slow wave ECM presented here will be a competitive candidate against gyrotrons for generating multi-MW millimeter microwaves available inmore » fusion plasma research.« less
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