A gyrotron output transmission circuit

T. White, R. Dandl, N. Taylor, S. Evans
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Abstract

The chief virtue of gyrotrons, their capability of producing high average power efficiently at millimeter wavelengths, places special demands on separating high power microwaves in oversized waveguides from high power electron beams. It is possible to transmit the microwave power across a region bounded by a large diameter cylindrical collector through the use of two spherical mirrors. The optimization at low power levels of such an arrangement at 28 GHz is discussed along with the presentation of measurements of transmission and mode purity at the output. In a specific case, for the TE01omode using 12-in.-diam spherical mirrors with a 2.5-in.-diam output waveguide, the optimum entrance diameter is 2.5 in. for a 16-in. focal separation. This yields a maximum TE01omode transmission of 94%. Adding a 12- in.-diam cylinder between the mirrors to simulate the collector surface produces a transmission ripple of only ±0.2 dB provided that a O.5-in. gas is present at one mirror to load spurious modes.
一种回旋管输出传输电路
回旋加速器的主要优点是能够在毫米波波段有效地产生高平均功率,这对将超大波导中的高功率微波与高功率电子束分离提出了特殊要求。通过使用两个球面反射镜,可以在一个大直径圆柱形集热器所限定的区域内传输微波功率。讨论了28ghz低功率下的优化问题,并给出了输出端的传输和模式纯度测量结果。在特定情况下,对于te01mode使用12-in。直径为2.5英寸的球面镜。-直径输出波导,最佳入口直径为2.5英寸。对于一个16英寸的。焦分离。这产生了94%的最大te01模传输。加上一个12英寸。在反射镜之间-直径圆柱体来模拟集电极表面产生的传输纹波仅为±0.2 dB。在一面镜子上存在气体以加载虚假模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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