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V形曲折矩形槽慢波结构的研究
引用本文:刘洋,徐进,许雄,沈飞,魏彦玉,黄民智,唐涛,王文祥,宫玉彬. V形曲折矩形槽慢波结构的研究[J]. 物理学报, 2012, 61(15): 154208-154208
作者姓名:刘洋  徐进  许雄  沈飞  魏彦玉  黄民智  唐涛  王文祥  宫玉彬
作者单位:电子科技大学物理电子学院微波电真空器件国家级重点实验室,成都,610054
基金项目:国家杰出青年科学基金(批准号: 61125103), 国防科技重点实验室基金(批准号: 9140C050101110C0501)和中央高校基本科研业务费项目(批准号: ZYGX2009Z003, ZYGX2010J054)资助的课题.
摘    要:提出了一种新型的慢波结构—-V形曲折矩形槽慢波结构, 该结构是由矩形槽波导沿其E面法向周期性呈V形折叠而成, 其两金属板之间的间隙形成天然的带状电子注通道. 相比传统的U形曲折矩形槽波导, 它能在保持良好高频特性的情况下增加互作用面积, 从而可以采用面积更大的带状电子注以获得更大的输出功率. 分析了该结构的高频特性, 在V波段完成了对行波管互作用电路的设计, 并利用三维粒子模拟的方法估计了其工作性能. 研究结果表明, 当工作电压和电流分别为12.8 kV和600 mA 时, 在58—64 GHz的频率范围内饱和平均输出功率大于1000 W, 相应的饱和增益和电子效率分别大于33 dB和13.2%.

关 键 词:V形曲折矩形槽  慢波结构  带状电子注  行波管
收稿时间:2011-11-13

Research on the V-shape folded rectangular groove slow-wave structure
Liu Yang,Xu Jin,Xu Xiong,Shen Fei,Wei Yan-Yu,Huang Min-Zhi,Tang Tao,Wang Wen-Xiang,Gong Yu-Bin. Research on the V-shape folded rectangular groove slow-wave structure[J]. Acta Physica Sinica, 2012, 61(15): 154208-154208
Authors:Liu Yang  Xu Jin  Xu Xiong  Shen Fei  Wei Yan-Yu  Huang Min-Zhi  Tang Tao  Wang Wen-Xiang  Gong Yu-Bin
Affiliation:National Key Laboratory of Science and Technology on Vacuum Electronics, School of Physical Electronics University of Electronic Science and Technology of China, Chengdu 610054, China
Abstract:A novel slow-wave structure called V-shape folded rectangular groove waveguide is proposed. This structure evolves from a conventional rectangular groove waveguide bending the groove with V-shape along its longitudinal direction, and the gap between metal plates forms a sheet electron beam channel naturally. Compared with the traditional U-shape structure, it can increase the interaction area without changing good high-frequency properties, which can adopt the sheet electron beam with a larger area to acquire more output power. In this paper, the high-frequency properties of this structure are analyzed, the interaction circuit for the V-band TWT is designed and the PIC simulation is performed to predict the operating characteristics. From our calculations, this tube can produce average saturation output power over 1000 Watts in a frequency range from 58 GHz to 64 GHz when the cathode voltage and beam current are set to be 12.8 kV and 600 mA respectively. The corresponding saturation gain and electron efficiency can reach over 33 dB and 13.2% respectively.
Keywords:V-shape folded rectangular groove  slow-wave structure  sheet electron beam  traveling-wave tube
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