红外与毫米波学报, 2020, 39 (2): 163, 网络出版: 2020-04-29  

用于毫米波辐射非致命生物效应的94 GHz回旋管设计与实验

Design and experiments of 94 GHz Gyrotron for non-lethal biological effects of millimeter wave radiation
作者单位
1 Department of Geriatric Cardiology, Sichuan Academy of Medical Sciences & Sichuan Provincial People's Hospital,Chengdu60072, China
2 School of Electronic Science and Engineering, University of Electronic Science and Technology of China, Chengdu610054, China
引用该论文

潘媛媛, 王丽娜, 刘建卫, 王晖, 陈爽. 用于毫米波辐射非致命生物效应的94 GHz回旋管设计与实验[J]. 红外与毫米波学报, 2020, 39(2): 163.

Yuan-Yuan PAN, Li-Na WANG, Jian-Wei LIU, Hui WANG, Shuang CHEN. Design and experiments of 94 GHz Gyrotron for non-lethal biological effects of millimeter wave radiation[J]. Journal of Infrared and Millimeter Waves, 2020, 39(2): 163.

参考文献

[1] KartikeyanM V, BoreE, ThummM K A. Gyrotrons high power microwave and millimeter wave technology[M]. Springer-Verlag, New York, NY, USA, 2004.

[2] GlyavinM Y, GinzburgN S, GoldenbergA L, et al. THz gyrotrons: status and possible optimizations[J]. Terahertz Sci. Tech. 2012, 52):67-77.

[3] WeideD. Applications and outlook for electronic terahertz technology[J]. Opt.Photonics News, 2003, 144):48-53.

[4] SiegelP H. Terahertz technology in biology and medicine[J]. IEEE Trans. Microw Theory Tech. 2004, 5210):2438-2447.

[5] GranatsteinV L, NusinovichG S. Detecting excess ionizing radiation by electromagnetic breakdown of air[J]. J. Appl. Phys. 2010, 1086):063304-063309.

[6] SabchevskiS, IdeharaT. Development of sub-terahertz gyrotrons for novel application[C]. In: Proceedings of the 36th International Conference Infrared, Millim. Terahertz Waves, 2011, pp. 1-2.

[7] WoolardD L, BrownE R, PepperM, et al. Terahertz frequency sensing and imaging: A time of reckoning future applications[J]. Proceedings of the IEEE, 2005, 9310):1722-1743.

[8] ZhaoQ X, ShengY. The nonlinear designs and experiments on a 0.42-THz second harmonic gyrotron with complex cavity[J]. IEEE Transactions on Electron Devices, 2017, 642):564-570.

[9] GuoG, NiuX, LiuY, et al. Modeling, simulation, and fabrication of electron optic system for application on 105 GHz high-power gyrotron[J]. International Journal of Numerical Modelling: Electronic Networks, Devices and Fields, 2019, p. e2593.

[10] ZhaoG, XueQ Z, WangY, et al. Design of quasi-optical mode converter for 170-GHz TE32,9-Mode high-power gyrotron[J]. IEEE Transactions on Plasma Science, 2019, 475):2582-2589.

[11] DenisovG G, PetelinM I, VinogradovD V, et al. Converter of high-mode of a circular waveguide into the main mode of a mirror line[J]. W090/0780 HOIPI/l6, PCT Gazette, 1990, 16:47-49.

[12] DmitryV, DenisovG G, PetelinM I. Effective conversion of high waveguide modes to eigenwaves of open mirror lines[J]. In Proc. 17th Int. Conf. Infr. Millim. Waves, Dec. 1992, Art. no. 19291S.

[13] JinJ, ThummM, PiosczykB, et al. Novel numerical method for the analysis and synthesis of the fields in highly oversized waveguide mode converters[J]. IEEE Trans. Microw. Theory Tech., 2009, 577):1661-1668.

[14] JinJ, ThummM, GantenbeinG, et al. A numerical synthesis method for hybrid-type high-power gyrotron launchers[J]. IEEE Trans. Microw. Theory Techn. 2017, 653):699-706.

[15] NiuX, LeiC, LiuY, et al. A study on 94 GHz low-voltage, low-current gyrotron[J]. IEEE Transactions on Electron Devices, 2013, 6011):3907-3912.

[16] LiuQ, LiuY, NiuX, et al. Theoretical investigation on a multifrequency multimode gyrotron at Ka-band[J]. IEEE Transactions on Plasma Science, 2017, 4511):2955-2961.

[17] RuifengP, NusinovichG S, SinitsynO V, et al. Numerical study of efficiency for a 670GHz gyrotron[J].Phys. Plasmas. 2011, 18:023107.

[18] BogdashovA, DenisovG G. Asymptotic theory of high-efficiency converters of higher-order waveguide modes into eigenwaves of open mirror lines[J]. Radiophys. Quant. Electon., 2004, 474):283296.

[19] JinJ B, PiosczykB, ThummM, et al. Quasi-optical mode converter/mirror system for a high-power coaxial-cavity gyrotron[J]. IEEE Trans. Plasma Sci., 2006, 344):1508-1515.

潘媛媛, 王丽娜, 刘建卫, 王晖, 陈爽. 用于毫米波辐射非致命生物效应的94 GHz回旋管设计与实验[J]. 红外与毫米波学报, 2020, 39(2): 163. Yuan-Yuan PAN, Li-Na WANG, Jian-Wei LIU, Hui WANG, Shuang CHEN. Design and experiments of 94 GHz Gyrotron for non-lethal biological effects of millimeter wave radiation[J]. Journal of Infrared and Millimeter Waves, 2020, 39(2): 163.

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