期刊文献+

回旋速调管放大器时域非线性理论与模拟 被引量:1

A time-dependent nonlinear theory and simulation for gyroklystron amplifier
原文传递
导出
摘要 研究了一种回旋速调管放大器时域非线性理论模型.该模型由广义电报方程来表示回旋速调管内的电磁场,采用引导中心近似的电子运动方程来推动粒子,由粒子更新得到的电流密度为源激励电磁场.基于上述理论模型,从回旋速调管电子注横向速度满足高斯分布出发,建立了速度分散的分布模型,编写了相应的时域非线性注波互作用模拟程序,对回旋速调管放大器的注波互作用进行了深入的分析和研究,并应用粒子模拟软件与自洽非线性模拟程序进行对比验证,两者结果基本一致. A time-dependent nonlinear theory for gyroklystron amplifier is presented. The theory includes a time-dependent description of the electromagnetic fields and a self-consistent analysis of the electrons. The generalized telegrapher equations represent the electro- magnetic fields. The equations of motion of the electrons are described in the framework of the guiding-center approximation. All trajectories are calculated and used as current sources for the fields. The nonlinear theory of interaction is investigated in which mode coupling is taken into account in varying wall radius. Transverse velocity of the electrons from the gyroklystron amplifier satisfies Gaussian distribution. Distribution model of the velocity spread in the gyroldystron amplifier beam-wave interaction is established. A code for the self-consistent nonlinear beam-wave interaction is developed based on the presented theory. The electron beam-wave interaction of a Kcr band gyroklystron amplifier is thoroughly studied and analyzed by the code. Numerical verification using MAGIC simulation is also given. The numerical results are in good agreement with the self-consistent nonlinear simulations.
出处 《物理学报》 SCIE EI CAS CSCD 北大核心 2012年第20期523-531,共9页 Acta Physica Sinica
基金 国家自然科学基金(批准号:60931001,61071030,10905009) 中央高校基本科研业务费(批准号:ZYGX2011J040,ZYGX2010J052)资助的课题~~
关键词 回旋速调管放大器 非线性理论 效率 速度分散 gyroklystron amplifier, nonlinear theory, efficiency, velocity spread
  • 相关文献

参考文献2

二级参考文献84

  • 1K.R.Chu,D.S.Furuno,N.C.Luhmann,Jr.,et a1.,Theory,design,and operation of large-orbit high-harmonic gyroklystron amplifiers,IEEE Trans.Oil Plasma Sci.,1985,13(6),435—443.
  • 2P.E.Latham,W.Lawson,V.Irwin,The design of a 100MW,Ku band second harmonic gyroklystron experiment,IEEE Trans.on Plasma Sci.,1994,22(5),804-817.
  • 3D.B.McDermott,C.K.Chong,N.C.Luhmann,Jr.,et a1.,High-harmonic slotted gyroklystron amplifier:linear theory and nonlinear simulation,IEEE Trans.on Plasma Sci.,1994,22(5),920-931.
  • 4J.D.Mcnally,D.B.McDermott,N.C.Luhmann,Jr.,et a1.,Third-harmonic TE411 gyroklystron amplifier,IEEE Trans.Oil Plasma Sci.,1998,26(3),496—499.
  • 5J.D.Mcnally,D.B.McDermott,Q.S.Wang,et al.,High performance,70kV third-harmonic smooth-bore gyroklystron amplifier,IEEE Trans.Oil Plasma Sci.,1994,22(5),932—938.
  • 6G.P.Saraph,W.Lawson,M.Castel,et al.,100-150MW designs of two-and three-cavity gyroklystron amplifiers operating at the fundamental and second harmonics in X-band and Kubands,IEEE Trans.Oil Plasma Sci.,1996,24(3),671—677.
  • 7I.G.Yovchev,W.G.Lawson,G.S.Nusinovich,et a1.,Present status of 17.1GHz four-cavity frequency-doubling coaxial gyroklystron design,IEEE Trans.on Plasma Sci.,2000,28(3),523—528.
  • 8M.T.Walter,G.S.Nusinovich,V.L.Granatstein,et al.,Design of a frequency-doubling,35GHz,1MW gyroklystron,IEEE Trans.Oil Plasma Sci.,2000,28(3),688-693.
  • 9G.S.Nusinovich,O.Dumbrajs,Two-harmonic prebunching of electrons in multi-cavity gyrodevices,Phys.Plasmas,1995,2(2),568—577.
  • 10G.S.Nusinovich,B.Levush,O.Dumbrajs,Optimization of multistage harmonic gyro-devices,Phys.Plasmas,1996,3(8),3133-3144.

共引文献33

同被引文献3

引证文献1

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