强激光与粒子束, 2012, 24 (9): 2174, 网络出版: 2012-09-12  

双耦合同轴腔TM310模加载空波导输出回路

Output circuit of TM310 mode in double-coupled coaxial cavity resonator loaded with empty waveguide
作者单位
1 内蒙古科技大学 理学院, 内蒙古 包头 014010
2 内蒙古科技大学 信息学院, 内蒙古 包头 014010
3 中国科学院 电子学研究所, 北京 100190
摘要
设计了速调管的单间隙和双间隙圆柱同轴腔高阶TM310模式输出回路。为降低外输出腔的外观品质因数和增加腔内工作模式电磁场的均匀性,采用了在输出孔处腔内侧位置设置轴向短路金属线的措施。由等效电路理论分别计算了它们加载空矩形波导TE10基模时,腔内漂移管中心位置处的等效间隙阻抗及对应的输出带宽。计算模拟发现,与单间隙腔相比,双间隙腔具有较大的间隙阻抗及带宽。
Abstract
The output circuit of high-order TM310 mode in single- and double-gap cylindrical coaxial cavities of klystron is designed. The gap impedances at the drift tube centers and corresponding output bandwidths are calculated, simulated and compared according to the equivalent circuit theory when the cavities are loaded with TE10 mode in empty rectangular waveguide. It is found that, double gap cavities have larger gap impedances and bandwidths than those of single gap cavities. By means of setting copper short circuit line in the inner side of output holes, the external quality factor is reduced and the mode uniformity in cavities is increased. This output circuit is suitable for high frequency, high power and narrowband klystrons. The research results are significant to output circuit design of high-order TM mode coaxial cavities of klystrons.
参考文献

[1] 董玉和,丁耀根,肖刘.同轴谐振腔高阶横磁模式参数的研究[J].物理学报,2005,54(12):5629-5635.(Dong Yuhe, Ding Yaogen, Xiao Liu. Research on parameters of higher- order transverse magnetic modes in cylindrical cavity resonator. Acta Physica Sinica,2005,54(12): 5629-5635)

[2] 董玉和,丁耀根,肖刘.微波同轴腔高阶TM模式参数的计算[J]. 强激光与粒子束,2005,17(7):1038-1042.(Dong Yuhe, Ding Yaogen, Xiao Liu. Calculation of higher-order TM mode parameters of microwave cylindrical cavity resonator. High Power Laser and Particle Beams, 2005,17(7):1038-1042)

[3] 董玉和,丁耀根,肖刘.固定频率后同轴谐振腔尺寸与TMn10模式阶数的可调性[J]. 强激光与粒子束, 2010,22(2):294-298.(Dong Yuhe, Ding Yaogen, Xiao Liu. Adjustability of coaxial cavity resonator size and TMn10 mode order for given frequency.High Power Laser and Particle Beams,2010,22(2):294-298)

[4] 董玉和,丁耀根, 王进华. 速调管输出腔高阶TM模式间隙阻抗的模拟计算[J]. 电子与信息学报, 2007,29(10):2517-2520.(Dong Yuhe, Ding Yaogen, Wang Jinhua. Simulation and calculation on gap impedances of higher order TM mode in output cavity of klystron.Journal of Electronics and Information Technology,2007,29(10):2517-2520)

[5] Dong Yuhe, Xiao Liu, Ding Yaogen, et al. Aperture coupling of coaxial cavity to rectangular waveguide[C]//IEEE Vaccum Electronics Conference 2008. 2008:135-136.

[6] 曹静,丁耀根, 沈斌. TM310模的同轴谐振腔与波导孔耦合及场分布研究[J]. 电子与信息学报, 2008,30(6):1522-1524.(Cao Jing, Ding Yaogen, Shen Bin. Research on field distribution of TM310 mode in cylindrical coaxial cavity resonator with coupling of waveguide hole. Journal of Electronics and Information Technology,2008,30(6):1522-1524)

[7] Dong Yuhe, Liu Tianda, Huang Chuanlu, et al. Equivalent gap impedance of TM310-mode in cylindrical coaxial output resonant cavity of klystron[C]//IVEC-IVESC 2012.2012:1-5.

[8] 廖复疆,孙振鹏,闫铁昌. 真空电子技术--信息化武器装备的心脏[M]. 2版.北京: 国防工业出版社, 2008:40-41.(Liao Fujiang, Sun Zhenpeng, Yan Tiechang. Vacuum electron technology-information equipment heart. 2nd ed. Beijing: National Defense Industry Press, 2008:40-41)

[9] 丁耀根, 大功率速调管的理论与计算模拟[M]. 北京: 国防工业出版社, 2008: 347-349.(Ding Yaogen. Theory and computer simulation of high power klystron. Beijing National Defense Industry Press,2008:347-349,353-357)

[10] 林福民, 丁耀根, 张志强, 等. 速调管双间隙腔的间隙阻抗矩阵频率特性的模拟计算方法[J]. 电子与信息学报, 2004,26(9):1480-1486.(Lin Fumin, Ding Yaogen, Zhang Zhiqiang, et al. Simulation computation method for calculating the impedance matrix of double gap cavity of klystron. Journal of Electronics and Information Technology,2004,26(9):1480-1486)

董玉和, 陶新, 刘永霞, 谢兴娟. 双耦合同轴腔TM310模加载空波导输出回路[J]. 强激光与粒子束, 2012, 24(9): 2174. Dong Yuhe, Tao Xin, Liu Yongxia, Xie Xingjuan. Output circuit of TM310 mode in double-coupled coaxial cavity resonator loaded with empty waveguide[J]. High Power Laser and Particle Beams, 2012, 24(9): 2174.

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!