Analysis of gyrotron coaxial cavities with corrugated inner conductor based on the method of moments

J. Raguin, K. Schunemann
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引用次数: 4

Abstract

To reduce the influence of possible competing modes, coaxial cavities with longitudinal corrugations on the inner conductor have been proposed as electrodynamic structures for the design of high-power high-frequency CW gyrotron oscillators. The technique proposed here to investigate such cavities, based on the Method of Moments, allows a rigorous analysis of the effect of the geometrical parameters of the corrugations on the eigenfrequency spectrum. The study of the variation of the transverse eigenvalues with the coaxial parameter C, defined as the ratio of the outer radius to the inner radius of the cavity, is more particularly emphasized. The results obtained with this method are compared with the surface-impedance model and checked against simulations carried out with the finite integration technique code MAFIA.
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基于矩量法的波纹内导体回旋管同轴腔分析
为了减少可能的竞争模式的影响,内导体上具有纵向波纹的同轴腔被提出作为设计大功率高频连续波回旋管振荡器的电动力结构。本文提出的研究这种空腔的技术,基于矩量法,允许对波纹的几何参数对特征频谱的影响进行严格的分析。横向特征值随同轴参数C(定义为腔外半径与腔内半径之比)变化的研究更为特别强调。用该方法得到的结果与表面阻抗模型进行了比较,并与有限积分技术代码MAFIA进行的仿真进行了验证。
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