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Influence of annular electron beam uniformities on the microwave characteristics in an S-band relativistic klystron amplifier

机译:环形电子束均匀性对S频带相对论Klystron放大器微波特性的影响

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摘要

The non-uniform annular electron beam models are established based on the annular cathode explosive emission luminescence images. The influence of electron beam uniformities on the microwave characteristics of an annular structure S-band relativistic klystron amplifier output cavity is investigated with particle-in-cell simulations. The electron beam non-uniformities are simulated using four different electron emission models: (1) continuous area without emission, (2) spaced emission, (3) enhanced emission, and (4) current density variation emission. The simulation results with the first emission model show that the output power decreases as the continuous area without emission increases, while the continuous area without emission has little effect on the frequency and pulse width. The simulation results with the second emission model show that the output power of the spaced emission is related to the distribution of non-emission areas. The more evenly the areas without emission are distributed on the annular cathode, the greater the output power is. The simulation results with the third emission model show that the higher the current density in the local area is, the smaller the output power is. The simulation results with the fourth emission model show that the fluctuation of current density causes the fluctuation of frequency and output power. The larger the change area of the current density is, the greater the fluctuation amplitudes of the output power and frequency are. The larger the fluctuation amplitude of current density is, the greater the fluctuation amplitudes of the output power and frequency are.
机译:基于环形阴极爆炸发射发光图像建立不均匀的环形电子束模型。研究了电子束均匀性对环形结构S频带相对论Klystron放大器输出腔的微波特性的影响,采用粒子粒子模拟。使用四种不同的电子发射模型模拟电子束不均匀性:(1)连续区域而无发射,(2)间隔发射,(3)增强发射,(4)电流密度变异排放。具有第一发光模型的仿真结果表明,随着连续区域而没有发射增加,输出功率降低,而无发射的连续区域对频率和脉冲宽度几乎没有影响。具有第二发射模型的模拟结果表明,间隔发射的输出功率与非发光区域的分布有关。没有发射的区域越均匀地分布在环形阴极上,输出功率越大。具有第三发射模型的仿真结果表明,局部区域的电流密度越高,输出功率越小。使用第四发射模型的模拟结果表明,电流密度的波动导致频率和输出功率的波动。电流密度的变化面积越大,输出功率和频率的波动幅度越大。电流密度的波动幅度越大,输出功率和频率的波动幅度越大。

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