期刊文献+

220GHz平面回旋管的理论分析

Theoretical Analysis of a 220GHz Planar Gyrotron
下载PDF
导出
摘要 为了提高回旋管的输出功率,满足等离子体加热等领域的需求,设计了一款220 GHz平面回旋管,介绍了平面回旋管多模时域模型的数值模拟方法,使用MATLAB进行编程优化,最终使横向互作用效率达到36.6%,总互作用效率达到25.4%,模式场沿横向均匀分布,实现了能量的横向输出,输出功率达到142 kW。并与220 GHz圆柱回旋管数值模拟结果进行对比,相较于传统圆柱回旋管输出功率提高了一个数量级。 In order to enhance the output power of gyrotrons and meet the demands of plasma heating and other fields,a 220GHz planar gyrotron is designed.The numerical simulation method for a multi-mode time-domain model of the planar gyrotron is introduced,and the MATLAB is used to optimize the programming.Ultimately,the transverse interaction efficiency reaches 36.6%,the total interaction efficiency reaches 25.4%.The mode field is uniformly distributed along the lateral direction,achieving lateral energy output with an output power of 142kW.Compared with the numerical simulation results of 220GHz cylindrical gyrotrons,the output power of the planar gyrotron is increased by an order of magnitude.
作者 徐海滔 赵鼎 刘观林 XU Hai-tao;ZHAO Ding;LIU Guan-lin(Aerospace Information Research Institute,Chinese Academy of Sciences,Beijing 100180,China;University of Chinese Academy of Sciences,School of Electronics,Electrical and Communication Engineering,Beijing 100180,China)
出处 《真空电子技术》 2024年第3期16-21,共6页 Vacuum Electronics
关键词 平面回旋管 注波互作用 时域非线性理论 数值模拟 Planar gyrotron Beam-wave interaction Time domain nonlinear theory Numerical simulation
  • 相关文献

参考文献1

二级参考文献16

  • 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
  • 2Siegel P H. Terahertz technology. IEEE Trans Microwave Theory Tech, 2002, 50:910-920
  • 3Mueller E R. Terahertz radiation: Applications and sources. The Industrial Physicist, 2003.27-29
  • 4Hong K D, Brand G F, Idehara T. A 150-600 GHz step-tunable gyrotron. J Appl Phys, 1993, 74(8): 5250-5258
  • 5Chu K R. The electron cycltron maser. Rev Modern Phy, 2004, 76(2): 489-540
  • 6Piosczyk B, Braz O, Dammertz G. A 1.5-MW, 140-GHz, TE28, 16-coaxial cavity gyrotron. IEEE Trans Plasma Sci, 1997, 25(3): 460-469
  • 7Piosczyk B, Dammertz G, Dumbrajs O. A 2-MW, 170-GHz coaxial cavity gyrotron. IEEE Trans Plasma Sci, 2004, 32(2): 413-417
  • 8Idehara T, Tsuchiya H, Watanabe O. The first experiment of a THz gyrotron with a pulse magent. Int J Infrared Millim Wave, 2006, 27(3): 319-331
  • 9Saito T, Nakano T, Hoshizuki H. Performance test of CW 300GHz Gyrotron FU CW I. Int J Infrared Millim Wave, 2007, 28:1063-1078
  • 10Saito T, Idehara T, Mitsudo S. Oscillation Characteristics of CW 300 GHz Gyrotron FU CWI.31st International Conference on Infrared and Millimeter Waves and 14th International Conference on Terahertz Electronics, China, 2006, 24

共引文献10

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