High Power Laser and Particle Beams, Volume. 35, Issue 2, 023008(2023)
Study of electron beam focusing performance of ferromagnetic material loaded compound pipe shell
[1] VED IPP. Rethinking what we know about vacuum electronic devices[J]. The Journal of Electronic Defense, 42, 1-4(2019).
[2] Wong P, Zhang Peng, Luginsland J. Recent theory of traveling-wave tubes: a tutorial-review[J]. Plasma Research Express, 2, 023001(2020).
[3] Wang Bin, Wang Fengyan, Zhou Xu, . Application and development trend of TWTs and MPMs[J]. Vacuum Electronics, 1-7(2019).
[4] Luo Jirun, Feng Jinjun, Gong Yubin. A review of microwave vacuum devices in China: theory and device development including high-power klystrons, spaceborne TWTs, and gyro-TWTs[J]. IEEE Microwave Magazine, 22, 18-33(2021).
[5] [5] Liao Fujiang. Vacuum electronic technologyheart of infmation equipment[M]. Beijing: National Defense Industry Press, 1999: 5155
[6] Li Haibo, Meng Xiaojun, Wei Yixue, . The Application of compound pipe shell in high power continuous wave TWT[J]. Vacuum Electronics, 10-11(2014).
[7] Liao Ping, Yang Zhonghai, Lei Wenqiang, . Computer simulation of electron beam characteristics focused by periodic permanent magnets[J]. High Power Laser and Particle Beams, 16, 68-72(2004).
[8] Cheng Lingli, Wang Linmei, Wang Jingdong, . Optimal design of periodic permanent magnetic focusing system for four-beam traveling wave tubes[J]. High Power Laser and Particle Beams, 31, 113005(2019).
[9] Li Zelun, Meng Jie, Huang Youjun, . Study of transverse magnetic fields of multi-beam PPM focusing system[J]. Journal of Hefei University of Technology, 37, 73-77(2014).
[10] [10] Gilmour A S Jr. Principles of traveling wave tubes[M]. Boston: Artech House, 1994.
[11] Paoloni C, Gamzina D, Letizia R, et al. Millimeter wave traveling wave tubes for the 21st Century[J]. Journal of Electromagnetic Waves and Applications, 35, 567-603(2021).
[12] Yu Jinqing, Hu Yulu, Li Bin. Research of the focusing magnetic’s impact on the interaction in TWT[J]. Vacuum Electronics, 21-25(2011).
[13] [13] Guo Jiyu. Study of beamwave interaction with high efficiency in TWTs[D]. Chengdu: University of Electronic Science Technology of China, 2014
[14] Zhao Xingang, Li Qingji, Zhao Shilu. Investigation of characters of dispersion and backward wave in helix TWTs with several typical vane load[J]. Vacuum Electronics, 5-8(2006).
[15] [15] Li Quanfeng. Numerical calculation of electromagic field electromag design[M]. Beijing: Tsinghua University Press, 2002
[16] Carlsten B E, Earley L M, Krawczyk F L, et al. Stability of an emittance-dominated sheet-electron beam in planar wiggler and periodic permanent magnet structures with natural focusing[J]. Physical Review Special Topics-Accelerators and Beams, 8, 062001(2005).
[17] Sharma R K, Choudhury A R, Arya S, et al. Design and experimental evaluation of dual-anode electron gun and PPM focusing of helix TWT[J]. IEEE Transactions on Electron Devices, 62, 3419-3425(2015).
[18] Kumar M, Geetha M K, Kumar M V. Design of magnetic focusing system for a compact Ka band helix TWT[J]. Defence Science Journal, 71, 329-331(2021).
Get Citation
Copy Citation Text
Yang Liu, Yixue Wei, Xuechun Shi, Na Fei, Li Qiu, Yanmei Wang. Study of electron beam focusing performance of ferromagnetic material loaded compound pipe shell[J]. High Power Laser and Particle Beams, 2023, 35(2): 023008
Category: High Power Microwave Technology
Received: Oct. 14, 2022
Accepted: --
Published Online: Feb. 16, 2023
The Author Email: