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A 0.34-THz High-Power, Slow-Wave Structure: Designing and Microfabricating an H-Plane Ridge-Loaded Folded Waveguide

机译:0.34至THz大功率,慢波结构:设计和微制造H平面脊型折叠波导

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摘要

High-power microvacuum electronic devices are one of the key technologies for the study of terahertz radiation sources. The traveling-wave tube (TWT) based on the folded waveguide slow-wave structure is the most promising terahertz device. This article designs the structural parameters of an H-plane ridge-loaded folded waveguide to improve the maximum output power of TWTs in the atmospheric window at 0.34 THz. The results predicted by a theoretical model and by electromagnetic (EM) simulation indicate the interaction impedance of the slow-wave structure is significantly increased. The simulation results show that the design is capable of raising the maximum output power to more than 50 W at 0.34 THz, with sheet electron beam parameters of 16.8 kV and 50 mA. The power gain, the 3-dB bandwidth, and the electronic efficiency of the folded waveguide can reach 30.5 dB, 10 GHz, and 6%, respectively. Finally, the designed slow-wave structure is microfabricated using multistep UV-LIGA technology.
机译:高功率微透视电子设备是太赫兹辐射源研究的关键技术之一。基于折叠波导慢波结构的行进波管(TWT)是最有前途的太赫兹设备。本文设计了H平面脊装的折叠波导的结构参数,以提高0.34至THz的大气窗口中TWT的最大输出功率。由理论模型和电磁(EM)模拟预测的结果表明慢波结构的相互作用阻抗显着增加。仿真结果表明,该设计能够将最大输出功率升高到0.34至THz以上的最大输出功率,为16.8kV和50 mA的片材电子束参数。折叠波导的功率增益,3-dB带宽和电子效率可分别达到30.5dB,10GHz和6%。最后,设计的慢波结构是使用MultiSep UV-LIGA技术进行微制造的。

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