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Coaxial Cavity With Stepped Inner Conductor for a Sub-Terahertz Second-Harmonic Gyrotron With Broadband Continuous Frequency Tuning

机译:宽带连续频率调谐的亚太赫兹二次谐波回旋管的带阶梯内导体的同轴腔

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摘要

It is found that a cavity design strategy proposed recently to enhance the continuous frequency tuning band of a sub-terahertz second-harmonic gyrotron aggravates the problem of competition between the operating mode and the first-cyclotron-harmonic (fundamental) modes. A stepped coaxial inner conductor is proposed in this article as a means for a selective suppression of the most dangerous fundamental competitors. It is shown that, with a proper choice of the operating mode, the effect of the inner conductor is only distinct for unwanted competing modes. In this case, the gyrotron performance is slightly sensitive to the longitudinal profile of the coaxial insert. Therefore, this profile can be selected in such a way as to reduce the effective cavity length for the competing modes, together with their diffractive quality factors. As a consequence, starting currents of these modes can be selectively increased. This is illustrated by a realistic design of a 0.4-THz second-harmonic gyrotron with 3-GHz continuous frequency tuning.
机译:发现最近提出的用于提高亚太赫兹次谐波回旋管的连续频率调谐频带的腔设计策略加剧了工作模式与第一回旋谐波(基本)模式之间的竞争问题。本文提出了一种阶梯式同轴内部导体,作为选择性抑制最危险的基本竞争者的一种手段。结果表明,通过适当选择工作模式,内部导体的作用仅在不需要的竞争模式下才明显。在这种情况下,回旋管的性能对同轴插入件的纵向轮廓稍有敏感。因此,可以以减小竞争模式的有效腔体长度以及其衍射质量因数的方式选择该轮廓。结果,可以有选择地增加这些模式的启动电流。带有3 GHz连续频率调谐的0.4 THz二次谐波回旋管的实际设计说明了这一点。

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