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新型高增益太赫兹折叠波导慢波结构 被引量:1
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作者 张芳 束小建 +2 位作者 董志伟 杨温渊 孙会芳 《强激光与粒子束》 EI CAS CSCD 北大核心 2018年第9期44-48,共5页
提出采用分段变参数型折叠波导慢波结构提高器件增益的新方法。结合小信号理论分析和束-波互作用的三维PIC数值模拟,进行分段变参数型慢波结构的理论设计研究。通过0.345THz两段式折叠波导慢波结构的设计实现和模拟验证,结果证明,相同... 提出采用分段变参数型折叠波导慢波结构提高器件增益的新方法。结合小信号理论分析和束-波互作用的三维PIC数值模拟,进行分段变参数型慢波结构的理论设计研究。通过0.345THz两段式折叠波导慢波结构的设计实现和模拟验证,结果证明,相同的电子注工作条件下,两段式慢波结构的电子转化效率和饱和功率相对于传统均匀型慢波结构提高了94%,并可以推广应用到多段式。 展开更多
关键词 太赫兹 折叠波导慢波结构 分段变参数 高增益
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W-band folded-waveguide traveling-wave tube with dual electron beams and H-plane power combining
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作者 Wang Huanyu Duan Jingrui +5 位作者 Wang Zhanliang Tang Haichen Lu Zhigang Wang Shaomeng Gong Huarong Gong Yubin 《强激光与粒子束》 北大核心 2025年第12期19-25,共7页
[Background]Traveling-wave tubes(TWTs)are widely applied in radar,imaging,and military systems owing to their excellent amplification characteristics.Miniaturization and integration are critical to the future of TWTs,... [Background]Traveling-wave tubes(TWTs)are widely applied in radar,imaging,and military systems owing to their excellent amplification characteristics.Miniaturization and integration are critical to the future of TWTs,with multi-channel slow-wave structures(SWSs)forming the foundation for their realization in high-power vacuum electronic devices.[Purpose]To provide design insights for multi-channel TWTs and simultaneously enhance their output power,a W-band folded-waveguide TWT with dual electron beams and H-plane power combining was proposed.[Methods]Three-dimensional electromagnetic simulations in CST were conducted to verify the highfrequency characteristics,electric field distribution,and amplification performance of the proposed SWS,thereby confirming the validity of the design.[Results]Results indicate that the designed TWT achieves a transmission bandwidth of 10 GHz.With an electron beam voltage of 17.9 kV and a current of 0.35 A,the output power reaches 450 W at 94 GHz,corresponding to an efficiency of 7.18%and a gain of 23.5 dB.Moreover,under fixed beam voltage and current,the TWT delivers over 200 W output power across 91–99 GHz,with a 3 dB bandwidth of 91–98.5 GHz.The particle voltage distribution after modulation further validates the mode analysis.[Conclusions]These results demonstrate the feasibility of compact dual-beam power-combining structures and provide useful guidance for the design of future multi-channel TWTs. 展开更多
关键词 double electron beam folded waveguide slow-wave structure power combining beam-wave interaction W-BAND
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