• High Power Laser and Particle Beams
  • Vol. 36, Issue 3, 033010 (2024)
Jingfan Zuo1、2, Shifeng Li1, Yang Wu1, Hua Huang1, Limin Sun1, and Falun Song1、*
Author Affiliations
  • 1Institute of Applied Electronics, CAEP, Mianyang 621900, China
  • 2Graduate School of China Academy of Engineering Physics, Mianyang 621900, China
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    DOI: 10.11884/HPLPB202436.230319 Cite this Article
    Jingfan Zuo, Shifeng Li, Yang Wu, Hua Huang, Limin Sun, Falun Song. Low magnetic field X-band over-mode relativistic backward wave oscillator with dual-cavity reflector[J]. High Power Laser and Particle Beams, 2024, 36(3): 033010 Copy Citation Text show less
    References

    [1] Wang Huida. Research on a Cb highefficiency relativistic backwardwave oscillat with lowmagicfield operation[D]. Beijing: Tsinghua University, 2021

    [2] Wang Dongyang, Teng Yan, Shi Yanchao, . Preliminary experimental study on a Ka-band RBWO operating at TM02 mode with low guiding magnetic field[J]. High Power Laser and Particle Beams, 30, 073003(2018).

    [3] Fan Zhiqiang, Sun Jun, Cao Yibing, et al. An oversized Ku-band Cerenkov oscillator with pure TM01 mode output[J]. Physics of Plasmas, 29, 063103(2022).

    [4] Wang Huida, Xiao Renzhen, Chen Changhua, et al. Experimental investigation of a super klystron-like relativistic backward wave oscillator operating with low magnetic field[J]. IEEE Transactions on Electron Devices, 68, 3045-3050(2021).

    [5] Xiao Renzhen. Research progress of relativistic backward wave oscillator[J]. Modern Applied Physics, 13, 020101(2022).

    [6] Wu Yang, Zhou Zigang. S-band high-efficiency relativistic backward wave oscillator with low magnetic field[J]. Acta Physica Sinica, 68, 194101(2019).

    [7] Ge Xingjun, Zhang Peng, Zhao Chenyu, et al. A high-efficiency L-band coaxial three-period relativistic Cherenkov oscillator[J]. Scientific Reports, 9, 12244(2019).

    [8] Sun Jun, Chen Changhua. Research on 3-GW repetitively operating relativistic backward wave oscillator[J]. IEEE Transactions on Plasma Science, 48, 3535-3543(2020).

    [9] Ma Qiaosheng. Design of frequency-agile relativistic backward wave oscillator[J]. High Power Laser and Particle Beams, 26, 123001(2014).

    [10] Xiao Renzhen, Chen Changhua, Shi Yanchao, . Particle-in-cell simulation for increasing the efficiency and power capacity of relativistic backward wave oscillators[J]. Vacuum Electronics, 29-36(2019).

    [11] Shi Yanchao, Teng Yan, Chen Changhua, . A high efficiency X-band over-mode relativistic backward wave oscillator[J]. High Power Laser and Particle Beams, 30, 073002(2018).

    [12] Tan Nongchao, Wu Ping, Sun Jun, et al. Experimental study on the influence of thermal accumulation on breakdown in slow-wave structures[J]. Physics of Plasmas, 30, 033106(2023).

    [13] Ma Qiaosheng, Zhang Yunjian, Li Zhenghong, . Development of X-band relativistic backward-wave oscillator with permanent magnet[J]. High Power Laser and Particle Beams, 29, 023002(2017).

    [14] Cao Yibing, Sun Jun, Fan Zhiqiang, et al. Over-sized mode-selective relativistic backward wave oscillator[J]. IEEE Electron Device Letters, 40, 1530-1533(2019).

    [15] Zhang Peng, Ge Xingjun, Dang Fangchao, et al. A high-efficiency dual-band relativistic Cerenkov oscillator based on dual electron beams[J]. Physics of Plasmas, 26, 103501(2019).

    Jingfan Zuo, Shifeng Li, Yang Wu, Hua Huang, Limin Sun, Falun Song. Low magnetic field X-band over-mode relativistic backward wave oscillator with dual-cavity reflector[J]. High Power Laser and Particle Beams, 2024, 36(3): 033010
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