• Journal of Infrared and Millimeter Waves
  • Vol. 24, Issue 4, 317 (2005)
[in Chinese]1、2 and [in Chinese]1
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    [in Chinese], [in Chinese]. SELF-CONSISTENT NONLINEAR COMPUTATION OF A 28GHZ GYROTRON AT THE SECOND HARMONIC[J]. Journal of Infrared and Millimeter Waves, 2005, 24(4): 317 Copy Citation Text show less
    References

    [1] Thumm M.State-of-the-art of high power gyro-devices and free electron masers update 2003, Scientific Report FZKA 6957[R]. Forschungszentrum Karlsruhe, Germany,2004

    [2] Felch K,Danly B G, Jory H R,et al.Characteristics and applications of fast-wave gyrodevices[J].Proc.IEEE ., 1999, 87(5): 752-781.

    [3] Paton B,Sklyarevich V E,Shevelev M V.Gyrotron radiation provides tool for new capabilities in coating products of various materials[J].Industrial Heating,61(1):53-55.

    [4] Kikunaga T,Asano H, Yasojima Y,et al.A 28 GHz gyrotron with permanent magnet system[J].Int.J.Electronics., 1995, 79: 655-663.

    [5] Link G, Feher L, Thumm M, et al.Sintering of advanced ceramics using a 30-GHz, 10-kW, CW industrial gyrotron[J]. IEEE Trans.Plasma Sci., 1999, 27: 547-556.

    [6] Hirota M, Brito M E, Hirao K, et al.Microwave Sintering of Silicon Witride With rare Earth Sesquioxide Additions, Ceramic Transactions[M].In: ClarkDE, Sutten WH, Lewis DA, eds, Microwave: Theory and Application in Materials Processing IV, San Diego, USA: Acs Publishing, 1997, 80: 515-522.

    [7] Borie E, Jodicke B.Comments on the linear theory of the gyrotron [J].IEEE Trans.Plasma Sci., 1988, 16: 116-121.

    [8] Liu P-K, Borie E. Kartikeyan M-V.Design of a 24GHz, 25-50kW technology gyrotron operating at the second harmonic[J].Int.J.Infrared and Millimeter Waves, 2000, 21(12): 1916-1942.

    [9] Bykov Yu V, Goldenberg A L, Flyagin V A.The Possibilities of Material Processing by Millimeter Wave Radiation[M].In: W.B.Snyder Jr., W.H.Sutton and D.L.Johnson, eds. Materials Research Society Symposium Proceedings, Pittsburgh, USA: Materials Research Society, 1991, 189: 41-42.

    [10] Bykov Yu V, Sorokin A A.Millimeter Wave Applicators for Technological Gyrotron Setups [M].In: Proceedings of the Second International Workshop on Strong Microwaves in Plasmas. Russia: Nizhny Novgorod, 1993, S46

    [11] Bykov Yu V, Semenov V E.Processing of material using microwave radiation[M].In: A.V.Gaponov-Grekhov and V.L.Granatstein, eds. Applications of High Power Microwaves. Boston: Artech House, 1994, 319-352.

    [12] Sklyarevich V, Detkov A, Shevelev M,et al.Interaction Between Gyrotron Radiation and Powder Materials[M].In: R.I.Beatty, W.H.Sutton and M.F.Iskander, eds. Materials Research Society Symposium Proceedings. Pittsburgh, USA: Materials Research Society, 1992, 269: 163-169.

    [13] Bykov Yu, Eremeev A, Glyavin M,et al.24-84GHz gyrotron system for technological microwave application[J].IEEE Trans.Plasma Sci.,2004, 32(1): 67-71

    [14] Shoji Miyake.Millimeter-wave materials processing in Japan by high-power gyrotron[J].IEEE Trans.Plasma Sci., 2003, 31(5): 1010-1015.

    [in Chinese], [in Chinese]. SELF-CONSISTENT NONLINEAR COMPUTATION OF A 28GHZ GYROTRON AT THE SECOND HARMONIC[J]. Journal of Infrared and Millimeter Waves, 2005, 24(4): 317
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