The Grouping of Electron Flow in Three-Gap Resonator at Excitation of Highest Mode with Multiple Frequency

V. Muchkaev, V. Tsarev
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Abstract

The results of a three-dimensional simulation of the electron flow grouping in a three-gap resonator are presented. By means of the change in the sizes of the coupling slots between the resonance cavities, the resonator can be tuned in such a way that the ratio of the frequency f2 of the second higher mode (in-phase) to the frequency f1 of the main mode (anti-phase) becomes equal to two. It is shown that when the input signal is fed at a frequency f1 (when f2/f1 = 2), the in-phase mode of oscillation is excited in the resonator, the amplitude of the oscillations that exceeds the amplitude of the main mode oscillations. In this case, the repetition frequency of the electron bunches at the exit from the resonator doubles.
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多频高模激励下三隙腔内电子流的分组
本文给出了电子流在三间隙谐振腔中的三维模拟结果。通过改变谐振腔之间耦合槽的大小,可以调谐谐振器,使第二高模(同相)的频率f2与主模(反相)的频率f1之比等于2。结果表明,当输入信号以频率f1(当f2/f1 = 2)馈电时,谐振腔内的同相振荡模式被激发,其振荡幅度超过主模振荡幅度。在这种情况下,电子束在谐振器出口的重复频率加倍。
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