• Journal of Infrared and Millimeter Waves
  • Vol. 33, Issue 1, 55 (2014)
SHI Shao-Hui1、2、3, LIU Pu-Kun4, DU Chao-Hai4, XU Shou-Xi1, GENG Zhi-Hui1, LI Zheng-Di1、2, and WANG Hu1、2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
  • 4[in Chinese]
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    DOI: 10.3724/sp.j.1010.2014.00055 Cite this Article
    SHI Shao-Hui, LIU Pu-Kun, DU Chao-Hai, XU Shou-Xi, GENG Zhi-Hui, LI Zheng-Di, WANG Hu. Simulation and design of a W-band third-harmonic gyrotron oscillator[J]. Journal of Infrared and Millimeter Waves, 2014, 33(1): 55 Copy Citation Text show less
    References

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    [5] Vladimir Bratman, Mikhail Glyavin, Toshitaka Idehara, et al. Review of subterahertz and terahertz gyrodevices at IAP RAS and FIR FU, IEEE Trans Plasma Sci[J]. 2009, 37(1): 36-43.

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    [8] Mikhail Yu Glyavin, Alexey G. Luchinin, Vladimir N. Manuilov, et al. Design of a subterahertz, third-harmonic continuous-wave gyrotron, IEEE Trans. Plasma Sci[J]. 2008, 36(3): 591-596.

    [9] Idehara T, Tsuchiya H, Watanabe O, et al. The first experiment of a THz gyrotron with a pulse magnet, International Journal of Infrared and Millimeter Waves[J]. 2006, 27(3): 319-331.

    [10] Toshitaka Idehara, Kosuke Kosuga, La Agusu, et al. Gyrotron FU CW Ⅶ for 300MHz and 600MHz DNP-NMR spectroscopy, J. Infrared Milli Terahz Waves[J]. 2010, 31: 763-774.

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    [12] Antonio C. Torrezan, Seong-Tae Han, et al. Continuous-wave operation of a frequency-tunable 460-GHz second-harmonic gyrotron for enhanced nuclear magnetic resonance, IEEE Trans. Plasma Sci[J]. 2010, 38(6): 1150-1159.

    [13] Fu Wenjie, Yan yang, Li xiaoyun, et al. Generating 0.42 THz radiation from a second harmonic gyrotron, Chinese Science Bulletin[J]. 2011, 56(33): 3572-3574.

    [14] YUAN Xue-Song, LAN Ying, MA Chun-Yan, et al. Theoretical study on a 0.6THz third harmonic gyrotron, Phys. Plasmas[J], 2011, 18: 103115.

    [15] GENG Zhi-Hui, LIU Pu-Kun, SU Yi-Nong, et al. Design of a Ka band 35kW CW low-voltage harmonic gyrotron[J], Int J. Infrared Millim. Waves, 2010, 31(1): 41-47.

    [18] Huang Yong, Li Hongfu, Du Pingzhong, et al. Third-harmonic complex cavity gyrotron self-consistent nonlinear analysis, IEEE Trans. Plasma Sci[J].1997, 25(6): 1406-1411.

    [19] Du Chao-Hai, Liu Pu-Kun . Beam-wave coupling strength analysis in a gyrotron traveling-wave amplifier, J Infrared Milli Terahz Waves[J]. 2010, 31: 714-723.

    [20] Liu P-K, Borie E, Kartikeyan M V. Design of a 24GHzV, 25-50kW technology gyrotron operating at the second harmonic, Int. J. Infrared and Millimeter Waves[J]. 2000, 21(12): 1917-1943.

    [21] Fliflet A W, Read M E, Chu K R, et al. A self- consistent field theory for gyrotron oscillator: application to a low Q gyromonotron, Int. J. Electronics[J].1983, 53(6): 505-521.

    SHI Shao-Hui, LIU Pu-Kun, DU Chao-Hai, XU Shou-Xi, GENG Zhi-Hui, LI Zheng-Di, WANG Hu. Simulation and design of a W-band third-harmonic gyrotron oscillator[J]. Journal of Infrared and Millimeter Waves, 2014, 33(1): 55
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