陀螺行波管双共聚焦波导的详细研究

IF 0.6 4区 物理与天体物理 Q4 OPTICS 红外与毫米波学报 Pub Date : 2020-01-01 DOI:10.11972/J.ISSN.1001-9014.2020.05.003
Zhang Chen, Wang Wei, Song Tao, Huang Jie, Cao Yi-chao, Liu Di-wei, Hu Min, Zhang Kai-chun, Wu Zhen-Hua, Zhong Renbin, Zhao Tao, G. Seng, L. Shenggang
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引用次数: 0

摘要

详细研究了陀螺行波管双共聚焦波导的电磁特性。用惠更斯原理的标量公式计算了双共焦波导中叠加模和环模两种稳态模的本征值和场分布,理论结果与商用CST软件的结果吻合较好。当反相位叠加模式TE06模式作为陀螺行波管的工作模式时,潜在寄生模式的衍射损耗远远大于工作模式的衍射损耗。这意味着在双共聚焦波导中,潜在的寄生模式可以通过其自身的衍射损耗来抑制。双共聚焦波导的模密度高于单共聚焦波导的模密度,但远低于圆柱波导的模密度。与单共聚焦波导相比,双共聚焦波导可以获得更高的波束相互作用效率,因此选择双共聚焦波导作为陀螺行波管的波束相互作用结构是合适的选择。
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Detailed investigations on double confocal waveguide for a gyro-TWT
The electromagnetic characteristics of the double confocal waveguide for a gyro-TWT is investigated in details. The eigenvalue and the field distribution of two kinds of steady-state modes in a double confocal wave⁃ guide,namely the superposition mode and the ring mode,are calculated with the scalar formulation of Huygens’ Principle,the theoretical results agree well with those from the commercial CST software. When the anti-phase superposition mode TE06 mode is chosen as an operating mode in a gyro-TWT,the diffractive loss of the potential parasitic modes is far greater than that of the operating mode. It means that the potential parasitic modes can be suppressed by means of its own diffractive loss in a double confocal waveguide. The mode density in a double confocal waveguide is higher than that in a single confocal waveguide,but far lower than that in a cylindrical waveguide. Compared to the single confocal waveguide,a higher beam-wave interaction efficiency can be ob⁃ tained in the double confocal waveguide for a gyro-TWT,it is an appropriate choice to choose a double confocal waveguide as the beam-wave interaction structure in a gyro-TWT.
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CiteScore
1.20
自引率
14.30%
发文量
4258
审稿时长
2.9 months
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