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Design and Experimental Study of a High-Gain W-Band Gyro-TWT With Nonuniform Periodic Dielectric Loaded Waveguide

机译:非均匀周期介电加载波导的高增益W波段陀螺TWT的设计与实验研究

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Gyrotron traveling wave tubes (gyro-TWTs) are of considerable interest for high-power millimeter and submillimeter radiation sources. The analytical design and experiment of a W-band gyro-TWT loaded with nonuniform periodic lossy dielectric rings is presented in this paper. The gyro-TWT is operating in the circular TE01 mode at the fundamental cyclotron harmonic, and driven by a 60 kV, 8-A gyrating electron beam with velocity ratio 1.2. Hot test results were: 1) maximum peak output power 112 kW; 2) 69.7-dB saturated gain; and 3) 23.3% efficiency at 93.5 GHz. The measured bandwidth with peak power greater than 90 kW is about 4 GHz in the range of 93–97 GHz. The hot test results show excellent agreement with the theoretical prediction. The potential backward wave oscillations involving the spurious modes TE11, TE21, and TE02 are effectively suppressed by the nonuniformly loaded periodic lossy dielectric rings. The W-band gyro-TWT is zero-drive stable at the operating points. It demonstrates that a nonuniform loaded lossy dielectric structure is excellent for suppressing potential spurious oscillations.
机译:对于大功率毫米和亚毫米辐射源,回旋行波管(gyro-TWT)引起了极大的兴趣。本文介绍了加载了非均匀周期损耗介电环的W波段陀螺TWT的分析设计和实验。陀螺仪-TWT在回旋基波谐波下以圆形TE 01 模式工作,并由速度比为1.2的60 kV,8-A旋转电子束驱动。热测试结果为:1)最大峰值输出功率112 kW; 2)69.7 dB饱和增益; 3)93.5 GHz时效率为23.3%。在93–97 GHz范围内,峰值功率大于90 kW时测得的带宽约为4 GHz。热试验结果与理论预测吻合良好。非均匀加载的周期性有损介电环有效地抑制了包含寄生模式TE 11 ,TE 21 和TE 02 的潜在反向波振荡。 W波段陀螺仪TWT在工作点处为零驱动稳定。它证明了非均匀负载的有损介电结构对于抑制潜在的寄生振荡是极好的。

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