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基于大回旋电子注的高次谐波回旋行波管

High-order harmonic Gyrotron Traveling Wave Tubes with large orbit electron beams
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摘要 回旋行波管兼具高功率、宽频带特性,在毫米波高分辨成像雷达、电子对抗等重要军事领域具有广泛的应用前景。基于大回旋电子注的回旋行波放大器可工作于高次谐波状态,大大降低了工作磁场,甚至可实现无超导工作,提高了回旋行波管使用的灵活性和机动性。本文优化设计了一支Ka波段二次谐波大回旋行波管,采用具有介质加载的纵向开槽互作用高频结构有效抑制返波振荡,提高了器件工作的稳定性。利用三维粒子仿真,对大回旋行波管注-波互作用过程进行了模拟。结果表明,在电子注电压为70 kV,电流为6.5 A时,磁场可降低至0.642 T,输出功率达到106.5 kW,带宽为2.10 GHz,最大增益为35 dB。 Gyrotron Traveling Wave Tubes(Gyrotron-TWT)have both high power and broadband characteristics,which have broad application prospects in important military fields such as millimeter wave detection and imaging radar,electronic countermeasures,etc.The gyrotron traveling wave amplifier with large orbit electron beams can operate in high-order harmonic state,greatly reducing the operating magnetic field and even achieving superconducting free operation.It can improve the flexibility and maneuverability of Gyrotron-TWT.This paper optimizes and designs a Ka band second harmonic Gyrotron-TWT with large orbit electron beams,which adopts a longitudinal slot interaction highfrequency structure with dielectric loading to effectively suppress backwave oscillation and improve the stability of device operation.The process of beam wave interaction in the Gyrotron-TWT was simulated by using three-dimensional particle simulation software.The results show that at the condition of the electron beam voltage of 70 kV,the current of 6.5 A,the magnetic field can be reduced to 0.642 T,the corresponding output power can reach 106.5 kW,the bandwidth is 2.1 GHz,and the maximum gain is 35 dB.
作者 赵其祥 雷朝军 于新华 高东硕 王峨锋 曾旭 冯进军 ZHAO Qixiang;LEI Chaojun;YU Xinhua;GAO Dongshuo;WANG Efeng;ZENG Xu;FENG Jinjun(School of Information and Communication,Guilin University of Electronic Technology,Guilin Guangxi 541004,China;School of Police Equipment Technical,China People's Police University,Langfang Hebei 065000,China;National Key Laboratory of Science and Technology on Vacuum Electronics,Beijing Vacuum Electronics Research Institute,Beijing 100015,China)
出处 《太赫兹科学与电子信息学报》 2024年第8期835-841,共7页 Journal of Terahertz Science and Electronic Information Technology
基金 国家自然科学基金资助项目(62361019,62001280)。
关键词 回旋行波管 高功率 大回旋电子注 雷达 Gyrotron-Traveling Wave Tubes high power large orbit electron beams radar
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  • 1戴广明,田为,廖源.-100kV/10MW全固态刚管调制器[J].现代雷达,2004,26(7):64-66. 被引量:21
  • 2朱兆君,贾宝富,罗正祥,杨赤如.螺旋线行波管的粒子模拟研究[J].真空科学与技术学报,2007,27(1):10-15. 被引量:16
  • 3白惜光.毫米波雷达的应用和发展趋势[J].现代雷达,1997,19(3):1-4. 被引量:10
  • 4Kraanykh A,Akre R,Gold S,et al.A Solid-state MARXTYPE modulator for driving A TWT[C]//24th International Modulator Symposium.[S.1.]:[s.n.],2000. 被引量:1
  • 5Tsai W C,Chang T H,chen N C,et al.Absolute Instabilities in a High-Order-Mode Gyrotron Traveling-wave Amplifier[J].Phys Rev,2004,E 70,056402:1-7. 被引量:1
  • 6Wang Q S,Huey H E,Mcdermott D B,et al.Design of a W-Band Second-harmonic TE02 gyro-TWT Amplifier[J].IEEE Trans Plasma Sci,2000,28(6):2232-2237. 被引量:1
  • 7Nguyen K T,Calame J P,Pershing D E,et al.Design of a Ka-Band Gyro-TWT for Radar Applications[J].IEEE Trans Electron Dev,2001,48(1):108-115. 被引量:1
  • 8Mcdermott D B,Balkcum A J,Luhmann N C,et al.35GHz 25kW CW Low-Voltage Third-Harmonic Gyrotron[J].IEEE Trans Plasma Sci,1998,24 (3):613-619. 被引量:1
  • 9Neilson J,Read M,Ives L.Design of a Permanent Magnet Gyrotron for Active Denial Systems[C].Proc IEEE IVEC,2009:92-93. 被引量:1
  • 10Chu K R,Lin A T.Gain and Bandwidth of the Gyro-TWT and CARM Amplifier[J].IEEE Trans.Plasma Sci,1988,16(2):90-104. 被引量:1

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