• Journal of Infrared and Millimeter Waves
  • Vol. 34, Issue 3, 307 (2015)
ZHANG Chang-Qing1、*, RUAN Cun-Jun2, WANG Shu-Zhong1, and YANG Xiu-Dong1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • show less
    DOI: 10.11972/j.issn.1001-9014.2015.03.010 Cite this Article
    ZHANG Chang-Qing, RUAN Cun-Jun, WANG Shu-Zhong, YANG Xiu-Dong. High-power extended-interaction klystron with ladder-type structure[J]. Journal of Infrared and Millimeter Waves, 2015, 34(3): 307 Copy Citation Text show less

    Abstract

    The characteristics of the planar ladder-type multi-gap resonant cavity are investigated, including the mode distribution, characteristic impedance (R/Q), coupling coefficient and the operating stability. The high-frequency interaction system for a W-band high-power extended interaction klystron was designed. The nonlinear performances such as the saturated power, gain, efficiency, as well as bandwidth are predicted by using the three-dimension Particle-in-Cell technology. The modulation and bunching of the beam and the physics of the interaction between the beam and the multi-gap resonant cavity were explored. PIC simulation results show that the output power is up to 1.8kW at the frequency of 94.52GHz with the voltage of 16 kV and beam current of 0.6 A. This power corresponds to a gain of 47.7dB and an efficiency of 19.4% respectively. The sweep-frequency simulations with the same drive power show that the 3-dB bandwidth of 210MHz can be achieved.
    ZHANG Chang-Qing, RUAN Cun-Jun, WANG Shu-Zhong, YANG Xiu-Dong. High-power extended-interaction klystron with ladder-type structure[J]. Journal of Infrared and Millimeter Waves, 2015, 34(3): 307
    Download Citation