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具有高稳定性的模式选择电路回旋行波管放大器

杜朝海 刘濮鲲 薛谦忠 张世昌

杜朝海, 刘濮鲲, 薛谦忠, 张世昌. 具有高稳定性的模式选择电路回旋行波管放大器[J]. 电子与信息学报, 2010, 32(8): 1986-1991. doi: 10.3724/SP.J.1146.2009.00953
引用本文: 杜朝海, 刘濮鲲, 薛谦忠, 张世昌. 具有高稳定性的模式选择电路回旋行波管放大器[J]. 电子与信息学报, 2010, 32(8): 1986-1991. doi: 10.3724/SP.J.1146.2009.00953
Du Chao-Hai, Liu Pu-Kun, Xue Qian-Zhong, Zhang Shi-Chang. A Mode-selective-circuit Gyrotron-traveling-wave Amplifier with High Stability[J]. Journal of Electronics & Information Technology, 2010, 32(8): 1986-1991. doi: 10.3724/SP.J.1146.2009.00953
Citation: Du Chao-Hai, Liu Pu-Kun, Xue Qian-Zhong, Zhang Shi-Chang. A Mode-selective-circuit Gyrotron-traveling-wave Amplifier with High Stability[J]. Journal of Electronics & Information Technology, 2010, 32(8): 1986-1991. doi: 10.3724/SP.J.1146.2009.00953

具有高稳定性的模式选择电路回旋行波管放大器

doi: 10.3724/SP.J.1146.2009.00953
基金项目: 

国家自然科学基金(60871051,60871047,60971072)资助课题

A Mode-selective-circuit Gyrotron-traveling-wave Amplifier with High Stability

  • 摘要: 该文基于线性理论和自洽非线性理论,对具有模式选择特性的损耗陶瓷和金属环交替加载的Ka波段TE01模回旋行波管放大器进行理论建模和稳定性分析。分析表明损耗陶瓷加载波导具有模式选择特性,其传输特性类似于光滑圆波导;稳定性分析揭示了互作用系统自激振荡的内反馈机制。将理论分析与美国海军实验室的实验工作进行了比较,证明了该文理论模型的可靠性。该文的理论模型对回旋行波管放大器的设计具有一定的指导意义。
  • Chu K R. The electron cyclotron maser[J].Reviews ofModern Physics.2004, 76(2):489-540[2]Chu K R and Chen H Y, et al.. Theory and experiment ofultrahigh-gain gyrotron traveling wave amplifier[J].IEEETransactions on Plasma Science.1999, 27(2):391-404[3]Garven M and Calame J P, et al.. A gyrotron-traveling-wavetube amplifier experiment with a ceramic loaded interactionregion[J].IEEE Transactions on Plasma Science.2002, 30(3):885-893[4]Calame J P and Garven M, et al.. Gyrotron-travelingwave-tube circuit based on lossy ceramics[J].IEEETransactions on Electron Devices.2002, 49(8):1469-1477[5]Song H H and McDermott D B, et al.. Theroy and experimentof a 94GHz gyrotron traveling-wave amplifier[J].Physics ofPlasmas.2004, 11(5):2935-2941[6]Sirigiri J R, Shapiro M A, and Temkin R J. High-power140-GHz quasioptical gyrotron traveling-wave amplifier[J].Physical Review Letters, 2003, 90(25): 258-302.[7]纵啸宇,薛谦忠,杜朝海. 损耗介质加载Ka波段TE01模回旋行波管放大器稳定性的分析[J].电子与信息学报.2009, 31(6):1483-1486浏览[8]Du Chao-hai, Liu Pu-kun, and Xue Qian-zhong, et al.. Effectof a backward wave on the stability of an ultrahigh gaingyrotron traveling-wave amplifier[J]. Physics of Plasmas,2008, 15(123107): 1-8.[9]Pershing D E and Nguyen K T, et al.. A TE11 Ka-bandgyro-TWT amplifier with high-average power compatibledistributed loss[J].IEEE Transactions on Plasma Science.2004, 32(3):947-956[10]Nguyen K T and Calame J P, et al.. Design of a Ka-bandgyro-TWT for radar applications[J].IEEE Transactions onElectron Devices.2001, 48(1):108-115[11]Du Chao-hai, Xue Qian-zhong, and Liu Pu-kun. Loss-inducedmodal transition in a dielectric-coated metal cylindricalwaveguide for gyro-traveling-wave-tube applications[J].IEEEElectron Device Letters.2008, 29(11):1256-1258[12]Du Chao-hai, Xue Qian-zhong, and Liu Pu-kun, et al.. Modaltransition and reduction in a lossy dielectric-coatedwaveguide for gyrotron-traveling-wave tube amplifierapplications[J].IEEE Transactions on Electron Devices.2009,56(5):839-845[13]殷瑞剑, 刘濮鲲. 3mm回旋行波放大器单阳极磁控注入式电子枪的设计[J].电子与信息学报.2008, 30(6):1507-1510浏览[14]Tigelis I G, Vomvoridis J L, and Tzima S. High-frequencyelectromagnetic modes in a dielectric-ring loaded beamtunnel[J].IEEE Transactions on Plasma Science.1998, 26(3):922-930[15]Tsai W C and Chang T H, et al.. Absolute instability in ahigh-order-mode gyrotron traveling-wave amplifier[J].[J].Physical Review E.2004,70:056402-
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出版历程
  • 收稿日期:  2009-07-02
  • 修回日期:  2010-04-06
  • 刊出日期:  2010-08-19

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