Abstract

The results of the numerical investigation of an S-band multitube double-gap resonator are presented in this paper. Its electrodynamic characteristics (characteristic impedance, beam coupling factor, relative electronic conductivity, and Q-factor) were calculated and the conditions for achieving the maximum efficiency are found. From the particle-in-cell simulation results, it follows that in the klystron with such a resonator in the maximum efficiency mode, the total efficiency reaches 77% (the electronic efficiency is 79.3%), and the output power is 109 kW.

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