期刊文献+

毫米波沟道梯型慢波结构行波管的线性理论 被引量:7

Linear theory of tunneladder traveling wave tubes
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摘要 在电子通道内引入一薄层空心电子注,对沟道梯型慢波结构行波管进行了线性理论研究,推导出了沟道梯型结构行波管的工作色散方程,计算了沟道梯型行波管的小信号增益和工作相速。计算结果表明:沟道梯型结构行波管每周期的增益高,带宽窄;当沟宽度由零增加到环内径的2倍时,增益减小量不足1%,这表明沟宽度对增益的影响不大;当脊高度增大10%时,增益增加62%,当环内径增大10%,增益减小57%,因此增益与脊高度正相关,与环内径负相关,且相关性十分明显。 Through placing a thin hollow electron beam in the electronic tunnel of the tunneladder TNT, this article derived the linear theory of the tunneladder traveling wave tubes(TWT). A dispersion equation of the tunneladder TWT was derived, and the small signal gain and the working phase velocity were computed. The results manifest that the gain of the Tunneladder TWT is high, and the bandwidth is narrow. When the width of the channel varies from zero to the double of the ring radius, the linear gain decreases within 1%. When the ring radius augment 10%, the linear gain decreases 57%, and the ridge height augment 10%, the linear gain increases 62%. Thus, the width of the channel plays a small role on small signal gain, but the height of the ridge and the radius of the ring affect small signal gain strongly.
出处 《强激光与粒子束》 EI CAS CSCD 北大核心 2006年第10期1663-1668,共6页 High Power Laser and Particle Beams
基金 国家自然科学基金资助课题(605302010) 教育部新世纪优秀人才支持计划资助课题
关键词 沟道梯型结构行波管 小信号增益 工作相速 色散方程 Tunneladder TWT Small signal gain Phase velocity Dispersion equation
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参考文献6

  • 1Karp A.Traveling wave tube experiments at millimeter wavelengths with a new,easily built,space-harmonic circuit[J].Proc IRE,1955,43:41-46.
  • 2Jacquez A,Karp A,Scott A.A millimeter-wave Tunneladder TWT[C]//International Electron Devices Meeting.1983,29:129-132.
  • 3Wilson D Jr,Jacquez A,Andker D.Recent progress in millimeter-wave Tunneladder TWTS[C]//International Electron Devices Meeting,1984,30:494-497.
  • 4Kosmahl H,Palmer R.Harmonic-analysis approach to the 'Tunneladder'-A modified Karp circuit for millimeter-wave TWTAs[J].IEEE Trans Electron Devices,1982,5(29):862-869.
  • 5Gong Y B,Wang W X,Qing Z D.Self-consistent theory of ring-plane traveling wave tube[C]//Proceedings of International Conference on Microwave and Millimeter Wave Technology,2002.
  • 6Gong Y B,Wang W X,Liu S G.Computation for the gain of ridge loaded ring-plane traveling wave tube[J].Int J of Infrared & Millimeter Waves,1997,11(18):2205-2217.

同被引文献27

  • 1赵超先.电磁波在金属导体中的色散和传播特性[J].南京晓庄学院学报,2001,17(4):34-37. 被引量:1
  • 2张勇,莫元龙.翼片加载螺旋带慢波结构的损耗特性[J].强激光与粒子束,2004,16(10):1299-1303. 被引量:2
  • 3洪家振,卢欣,任菁圃,周东方.一种微波幅度均衡器的设计与仿真[J].计算机仿真,2006,23(1):291-293. 被引量:3
  • 4鲍争光,任菁圃,牛忠霞.电阻加载的螺旋形谐振器在微带均衡器中的应用[J].微波学报,2005,21(B04):142-145. 被引量:4
  • 5王文祥.微波工程技术[M].成都:电子科技大学出版社,2006.
  • 6Karp A.Traveling wave tube experiments at millimeter wavelengths with a new,easily built,space-harmonic circuit[J].Proc I R E,1955,29(5):41-46.
  • 7Jacquez A,Karp A,Scott A.A millimeter-wave tunneladder TWT[C]//IEEE International Proc of Electron Devices Meeting.1983,29:129-132.
  • 8Wilson D,Jacquez A Jr,Andker D.Recent progress in millimeter-wave tunneladder TWTs[C]//IEEE International Proc of Electron Devices Meeting.1984,30:494-497.
  • 9Kosmahl H,Palmer R.Harmonic-analysis approach to the 'tunneladder'-a modified Karp circuit for millimeter-wave TWTAs[J].IEEE Trans Electron Devices,1982,5(29):862-869.
  • 10Gong Y B,Wang W X,Qing Z D.Self-consistent theory of ring-plane traveling wave tube[C]//Proceedings of International Conference on Microwave and Millimeter Wave Technology.2002.

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