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Demonstration of a High-Order Mode Input Coupler for a 220-GHz Confocal Gyrotron Traveling Wave Tube

机译:用于220 GHz共焦距陀螺速度波管的高阶模式输入耦合器的演示

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摘要

A design of high-order mode input coupler for 220-GHz confocal gyrotron travelling wave tube is proposed, simulated, and demonstrated by experimental tests. This input coupler is designed to excite confocal TE (06) mode from rectangle waveguide TE (10) mode over a broadband frequency range. Simulation results predict that the optimized conversion loss is about 2.72 dB with a mode purity excess of 99%. Considering of the gyrotron interaction theory, an effective bandwidth of 5 GHz is obtained, in which the beam-wave coupling efficiency is higher than half of maximum. The field pattern under low power demonstrates that TE (06) mode is successfully excited in confocal waveguide at 220 GHz. Cold test results from the vector network analyzer perform good agreements with simulation results. Both simulation and experimental results illustrate that the reflection at input port S11 is sensitive to the perpendicular separation of two mirrors. It provides an engineering possibility for estimating the assembly precision.
机译:提出,模拟和证明了220GHz共聚焦陀螺陀螺行驶波管的高阶模式输入耦合器的设计,并通过实验测试证明。该输入耦合器设计用于在宽带频率范围内从矩形波导TE(10)模式激发共聚焦TE(06)模式。仿真结果预测优化的转换损耗约为2.72 dB,模式纯度超过99%。考虑到陀螺族相互作用理论,获得了5GHz的有效带宽,其中光波波耦合效率高于最大值的一半。低功率下的场图案表明TE(06)模式在220GHz的共聚焦波导中成功激发。传染媒介网络分析仪的冷测试结果与仿真结果进行了良好的协议。仿真和实验结果都示出了输入端口S11的反射对两个镜子的垂直分离敏感。它提供了估计装配精度的工程可能性。

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