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高效强流径向分离腔振荡器研究 被引量:3

A proposed high electrical efficiency and high current intensity radial split-cavity oscillator
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摘要 根据同轴虚阴极的结构特点,提出了一种紧凑型径向分离腔振荡器,该径向分离腔的特点是输入电子束的电流可以很大,从而可以得到较高的微波输出功率.综合考虑影响微波输出的各种因素,在电子束为410kV,电流为35kA的条件下,模拟得到的平均功率大于5·0GW,频率为1·46GHz,电子束功率效率达到34·8%. Using the structure of the coaxial vircator oscillator, a new kind of compact radial split-cavity oscillator is presented. The characteristic of the oscillator is that the input current can be intense, and this is the main reason for the output microwave power to be high. Taking into consideration all kinds of factor, under the condition of the voltage of 410 kV and the beam current of 35 kA, the numerical simulation gives an average output microwave power of about 5.0 GW at the microwave frequency of 1.46 GHz, and the electronic efficiency is 34.8 %.
出处 《物理学报》 SCIE EI CAS CSCD 北大核心 2008年第2期975-979,共5页 Acta Physica Sinica
关键词 径向分离腔 高功率微波 同轴虚阴极 电子束分布 split-cavity oscillator, high power microwave, coaxial virtual cathode, beam distribution
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  • 1谢家.调速管群聚理论[M].北京:科学出版社,1966..
  • 2谢家,调速管群聚理论,1966年
  • 3Jiang W,Woolverton K,Dickens J,et al.High power microwave generation by a coaxial virtual cathode oscillator[J].IEEE Trans Plasma Sci,1999,27:538-1542.
  • 4Jiang W,Dickens J,Kristiansen M.Efficiency enhancement of a coaxial virtual cathode oscillator[J].IEEE Trans Plasma Sci,1999,27(5):1543-1544.
  • 5Jiang W,Kristiansen M.Theory of the virtual cathode oscillator[J].Physics of Plasma,2001,8:3781-3787.
  • 6Cheng X,Dickens J,Choi E H,et al.Cavity resonance effect on a coaxial virtual cathode oscillator[C]//Proc of the 2003 IEEE Inter Pulse Power Conf.2003:1165.
  • 7Benford J,Price D,Sze H,et al.Interaction of a vircator microwave generator with an enclosing resonant cavity[J].J Appl Phys,1987,61:2098-2100.
  • 8Benford J,Swegle J.High-power microwaves[M].Boston:Artech House,1992:307.
  • 9丁武.Super-Reltron的微波产生机理[J].物理学报,1997,46(11):2180-2187. 被引量:4
  • 10黄华,王平山,甘延青,陈洪斌,王文斗,雷方燕,郑建国,吴中发,吴尚清,谢敏,邓建军.L波段相对论速调管放大器研究[J].强激光与粒子束,1998,10(1):135-139. 被引量:12

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