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Mode control in a high-gain relativistic klystron amplifier

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【作者】 李正红张红鞠炳全苏昶吴洋

【Author】 LI Zheng-Hong1 ZHANG Hong2 JU Bing-Quan1 SU Chang1 WU Yang1 1 Institute of Applied Electronics,China Academy of Engineering Physics,Mianyang 621900,China 2 Institute of Electronic Engineering,China Academy of Engineering Physics,Mianyang 621900,China

【机构】 Institute of Applied Electronics,China Academy of Engineering PhysicsInstitute of Electronic Engineering,China Academy of Engineering Physics

【摘要】 Middle cavities between the input and output cavity can be used to decrease the required input RF power for the relativistic klystron amplifier.Meanwhile higher modes,which affect the working mode,are also easy to excite in a device with more middle cavities.In order for the positive feedback process for higher modes to be excited,a special measure is taken to increase the threshold current for such modes.Higher modes’ excitation will be avoided when the threshold current is significantly larger than the beam current.So a high-gain S-band relativistic klystron amplifier is designed for the beam of current 5 kA and beam voltage 600 kV.Particle in cell simulations show that the gain is 1.6×105 with the input RF power of 6.8 kW,and that the output RF power reaches 1.1 GW.

【Abstract】 Middle cavities between the input and output cavity can be used to decrease the required input RF power for the relativistic klystron amplifier.Meanwhile higher modes,which affect the working mode,are also easy to excite in a device with more middle cavities.In order for the positive feedback process for higher modes to be excited,a special measure is taken to increase the threshold current for such modes.Higher modes’ excitation will be avoided when the threshold current is significantly larger than the beam current.So a high-gain S-band relativistic klystron amplifier is designed for the beam of current 5 kA and beam voltage 600 kV.Particle in cell simulations show that the gain is 1.6×105 with the input RF power of 6.8 kW,and that the output RF power reaches 1.1 GW.

【关键词】 high powermicrowavemode controlmicrowave device
【Key words】 high powermicrowavemode controlmicrowave device
【基金】 Supported by NSFC(10347009)
  • 【文献出处】 中国物理C ,Chinese Physics C , 编辑部邮箱 ,2010年05期
  • 【分类号】TN722
  • 【被引频次】4
  • 【下载频次】32
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