• Journal of Infrared and Millimeter Waves
  • Vol. 32, Issue 5, 408 (2013)
SHI Shao-Hui1、2、3、*, LIU Pu-Kun4, DU Chao-Hai4, XU Shou-Xi1, GENG Zhi-Hui1, LI Zheng-Di1、3, and WANG Hu1、3
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
  • 4[in Chinese]
  • show less
    DOI: 10.3724/sp.j.1010.2013.00408 Cite this Article
    SHI Shao-Hui, LIU Pu-Kun, DU Chao-Hai, XU Shou-Xi, GENG Zhi-Hui, LI Zheng-Di, WANG Hu. A W band second harmonic gyrotron oscillator[J]. Journal of Infrared and Millimeter Waves, 2013, 32(5): 408 Copy Citation Text show less
    References

    [1] Chu K R . The electron cyclotron master[J]. Pre. Mod. Phys, 2004, 76(2):489-540.

    [2] Nitin Kumar, Udaybir Singh, Singh T P , et al. A review on the applications of high power, high frequency microwave source: gyrotron[J]. J Fusion Energy, 2011, 30:257-276.

    [3] Glyavin M.Yu., Luchinin A.G., Golubiatnikov G.YU. , Generation of 1.5-kW, 1-THz coherent radiation from a gyrotron with a pulsed magnetic field[J]. Physics review letters, 2008, 100:015101.

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

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

    [6] Idehara T. , Tatsukawa T. , Ogawa I. , et al. Development of a second cyclotron harmonic gyrotron operating at submillimeter wavelengths[J]. Phys. Fluids B, 1992, 4(1):267-273.

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

    [8] 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[J]. IEEE Trans. Plasma Sci, 2010, 38(6):1150-1159.

    [9] Melissa K Hornstein, Vikram S Bajaj, RobertG Griffin, et al. Second harmonic operation at 460GHz and broadband continuous frequency tuning of a gyrotron oscillator[J]. IEEE Trans Electron Devices, 2005, 52(5):798-807.

    [10] E.Borie. Self consistent code for a 150 GHz gyrotron[J]. Int J.Infrared and Millimeter Waves, 1986, 7(12):1863-1879.

    [11] DU Chao-Hai, LIU Pu-Kun, Beam-wave coupling strength analysis in a gyrotron traveling-wave tube amplifier[J]. J. Infrared Milli Terahz Waves, 2010, 31(6):714-723.

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

    [15] Chao-Hai Du, Qian-Zhong Xue, Pu-Kun Liu, Loss-induced modal transition in a dielectric-coated metal cylindrical waveguide for gyro-traveling -wave-tube applications[J]. IEEE Electron Device Letters, 2008, 29(11): 1256-1258.

    [17] DU Chao-Hai, LIU Pu-Kun, Stabilization of the potential multi-steady-state absolute instabilities in a gyrotron traveling-wave amplifier[J]. Phys. Plasmas, 2009, 16(7):073104.

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

    SHI Shao-Hui, LIU Pu-Kun, DU Chao-Hai, XU Shou-Xi, GENG Zhi-Hui, LI Zheng-Di, WANG Hu. A W band second harmonic gyrotron oscillator[J]. Journal of Infrared and Millimeter Waves, 2013, 32(5): 408
    Download Citation