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Design of a ka-band second harmonic gyroklystron amplifier by using a self-consistent nonlinear simulation

机译:利用自洽非线性仿真设计ka波段二次谐波回旋速调管放大器

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摘要

The self-consistent nonlinear simulation of a Ka-band, second harmonic two-stage gyroklystron amplifier is presented in this paper. The beam-wave interaction in the gyroklystron is studied by using a self-consistent nonlinear simulation code GKLSC, and the electron bunching pictures of the different positions in phase space are demonstrated in detail. The effects of various parameters, such as drift tube length, input power, frequency, velocity ratio, guiding center radius, magnetic field strength, velocity spread and beam current on the electronic efficiency, gain, and output power are discussed. The simulated results show that the designed gyroklystron amplifier can obtain about 21% electronic efficiency, 43 dB gain, and 0.6% bandwidth, respectively. The performance of the designs is also confirmed by a particle-in-cell code.
机译:本文介绍了Ka波段二次谐波两级回旋速调管放大器的自洽非线性仿真。利用自洽非线性仿真代码GKLSC研究了回旋速调管中的束波相互作用,并详细展示了相空间中不同位置的电子束图。讨论了诸如漂移管长度,输入功率,频率,速度比,导向中心半径,磁场强度,速度扩展和电子束电流等各种参数对电子效率,增益和输出功率的影响。仿真结果表明,设计的回旋速调管放大器可以分别获得约21%的电子效率,43 dB的增益和0.6%的带宽。设计的性能还可以通过单元中的粒子代码来确认。

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