期刊文献+

小回旋三次谐波0.52THz回旋管 被引量:6

A 0.52THz third harmonic little-orbit gyrotron
下载PDF
导出
摘要 为了发展大功率高效率太赫兹辐射源,对小回旋电子注激励三次谐波太赫兹电子回旋脉塞进行了研究,分析了不同参数情况下的模式竞争.研究结果表明,采用近轴小回旋电子注能够实现三次谐波单模振荡.在此基础上设计了一只0.52 THz、TE37模三次谐波回旋管,数值计算表明,该回旋管在工作磁场为6.98 T下输出功率可以达到3.7 kW.对产生近轴小回旋电子注的高磁压缩比磁控注入式电子光学系统进行的粒子模拟研究结果表明,该电子枪能够产生满足实验要求的65 kV/2.5 A,横纵速度比为1.24,引导中心半径0.35 mm的小回旋电子注,其纵向速度离散6.6%,横向速度离散6.1%. A third harmonic little-orbit gyrotron oscillator is investigated theoretically in order to develop high power and efficiency terahertz(THz) radiation sources.Mode competition with different electron-beam parameters have been investigated in a 0.52 THz third harmonic TE37 mode gyrotron oscillator,which can generate 3.7kW of RF power at resonant magnetic field 6.98T.In addition,a high magnetic compression ratio magnetron injection gun(MIG) with 65 kV/2.5 A has been developed.PIC simulation results show that the velocity ratio of electron beam is 1.24,the average beam radius in the cavity is 0.35 mm.The spread of perpendicular and parallel velocities are 6.1% and 6.6%,respectively.
出处 《红外与毫米波学报》 SCIE EI CAS CSCD 北大核心 2012年第2期127-131,共5页 Journal of Infrared and Millimeter Waves
基金 国家自然科学基金(61101041 60877058) 中央高校基本科研业务费专项资金(ZYGX2009J048)~~
关键词 回旋管 太赫兹 高次谐波 模式竞争 gyrotron terahertz high-harmonic mode competition
  • 相关文献

参考文献11

  • 1刘盛纲.太赫兹科学技术的新发展[J].中国基础科学,2006,8(1):7-12. 被引量:192
  • 2Glyavin M Y,Luchinin A G.,Golubiatnikov G Y.Genera-tion of 1.5-kW,1-THz coherent radiation from a gyrotronwith a pulsed magnetic field[J].Phys.Rev.Lett.,2008,100(1):015101.
  • 3Idehara T,Tsuchiya H,Watanabe O,et al.The first exper-iment of a THz gyrotron with a pulse magnet[J].Int.J.Infrared and Millimeter Waves,2006,27(3):319-331.
  • 4Hornstein M K,Bajaj V S,Griffin R G,et al.Continuouswave operation of a 460-GHz second harmonic gyrotron os-cillator[J].IEEE Transactions on Plasma Science,2006,34(3):524-533.
  • 5Yan Y,Liu S G,Li X Y,et al.Development and experi-ment of 0.22 THz gyromonotron[J].Chinese Science Bulle-tin,2009,54(4):522-526.
  • 6袁学松,鄢扬,刘盛纲.大半径同轴谐振腔太赫兹回旋管研究[J].电子学报,2009,37(2):334-337. 被引量:6
  • 7Bratman V L,Kalynov Y K,Manuilov V N.Large-orbit gy-rotron operation in the terahertz frequency range[J].Phys.Rev.Lett.,2009,102(24):245101.
  • 8Bratman V L,Kalynov YK,Manuilov V N,et al.Submilli-meter-wave large-orbit gyrotron[J].Radio physics andQuantum Electronics,2005,48(10):731-736.
  • 9袁学松,鄢扬,傅文杰,钟任斌,刘盛纲.220GHz回旋单腔管的设计[J].强激光与粒子束,2007,19(10):1677-1679. 被引量:10
  • 10Bratman V L,Fedotov A E,Kalynov Y K,et al.Moder-ately relativistic high-harmonic gyrotrons for millimeter/submillimeter wavelength band[J].IEEE Transactions onPlasma Science,1999,27(2):456-461.

二级参考文献26

  • 1殷勇,祝大军,刘盛纲,梁显锋,刘濮鲲.35GHz,TE021回旋速调管的电磁模拟[J].电子学报,2005,33(6):1024-1027. 被引量:9
  • 2袁学松,鄢扬,钟任斌,刘盛纲.等离子体填充圆柱波导中双流不稳定性的研究[J].强激光与粒子束,2006,18(6):995-998. 被引量:6
  • 3刘盛纲.太赫兹科学技术的新发展[A].第270次香山科学会议[C].北京,2005:6-35.
  • 4Siegel P H. Terahertz technology[J].IEEE Transactions on Microwave Theory and Techniques.2002,5(3) :910- 928.
  • 5B Piosczyk, et al. A 2-MW 170-GHz coaxial cavity gyrotron[J]. IEEE Transactions on Plasma Science, 2004,32 (3) : 413 - 417.
  • 6M K Hornstein, et al. Second harmonic operation at 460GHz and broadband continuous frequency tuning of a gyrotron oscillator[J]. IEEE Transactions on Electron Devices, 2005,52(5 ) : 798 - 807.
  • 7La Agusu, et al. Mode selection for a temhertz gyrotron based on a pulse magnet system[J].International Journal of Infrared and Millimeter Waves, 2004,25(7) : 1023 - 1036.
  • 8Liu S G, et al. The coaxial gyrotron with two electron beams. I.Linear theory and nonlinear theory[ J] .Physics of Plasmas, 2007,14(10) : 103113.
  • 9M Yu Glyavin,et al. Generation of 1.5kW, 1THz coherent radiation from a gymtron with a pulsed magnetic field[ J]. Physical Review Letters, 2008,100( 1 ) :015101.
  • 10[1]Thumm M.State-of-the-art of high power gyro-devices and free electron masers update 1999,Scientific Report FZKA 6418,Forschungszentrum Karlsruhe,Germany,2000.

共引文献210

同被引文献18

引证文献6

二级引证文献7

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部