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首页> 外文期刊>Journal of the Korean Physical Society >Design of a double-anode magnetron-injection gun for the W-band gyrotron
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Design of a double-anode magnetron-injection gun for the W-band gyrotron

机译:W波段回旋管双阳极磁控注入枪设计

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摘要

A double-anode magnetron-injection gun (MIG) was designed. The MIG is for a W-band 10-kW gyrotron. Analytic equations based on adiabatic theory and angular momentum conservation were used to examine the initial design parameters such as the cathode angle, and the radius of the beam emitting surface. The MIG's performances were predicted by using an electron trajectory code, the EGUN code. The beam spread of the axial velocity, Delta v(z)/v(z), obtained from the EGUN code was observed to be 1.34% at alpha = 1.3. The cathode edge emission and the thermal effect were modeled. The cathode edge emission was found to have a major effect on the velocity spread. The electron beam's quality was significantly improved by affixing non-emissive cylinders to the cathode.
机译:设计了双阳极磁控管注入枪(MIG)。 MIG用于W波段10 kW旋流器。基于绝热理论和角动量守恒的解析方程用于检查初始设计参数,例如阴极角度和射束发射表面的半径。 MIG的性能是通过使用电子轨迹代码EGUN代码来预测的。从EGUN代码获得的轴向速度的光束扩展Delta v(z)/ v(z)在alpha = 1.3时为1.34%。对阴极边缘发射和热效应进行了建模。发现阴极边缘发射对速度扩展具有主要影响。通过将非发射圆柱体固定在阴极上,可以显着提高电子束的质量。

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