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首页> 外文期刊>AIP Advances >Study of the beam-wave interaction of a 0.34-THz confocal waveguide gyro-TWT with confocal beam
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Study of the beam-wave interaction of a 0.34-THz confocal waveguide gyro-TWT with confocal beam

机译:与共焦梁的0.34-THz共焦波导陀螺仪陀螺仪的光波相互作用研究

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摘要

In this paper, in order to enhance the efficiency of the confocal gyrotron travelling wave tube (confocal gyro-TWT), the confocal beam is first introduced based on the field distribution of the operating mode in the confocal waveguide. Besides, a confocal gyro-TWT with a confocal beam operating at 0.34 THz is simulated and designed based on linear and nonlinear theories. It is verified that the confocal beam can enhance the interaction efficiency and output power significantly through simulation. In addition, the effects of electron beam parameters on output power are also analyzed in this paper. The simulation results indicate that the confocal gyro-TWT can operate at TE 06 stably with an output power of 17.3 kW when the beam voltage is 60 kV, beam current is 2 A, input power is 40 mW, and transverse velocity spread is 5%. The corresponding frequency and interaction efficiency are 0.34 THz and 14.4%, respectively.
机译:在本文中,为了提高共焦戈托朗行波管(共焦陀螺TWT)的效率,首先基于共聚焦波导中的操作模式的场分布来引入共聚焦光束。此外,基于线性和非线性理论,模拟和设计了在0.34THz上运行的共聚焦光束的共聚焦陀螺仪。通过仿真验证,共聚光束可以显着提高相互作用效率和输出功率。此外,本文还分析了电子束参数对输出功率的影响。仿真结果表明,当光束电压为60kV时,共聚焦陀螺仪可以稳定地在TE 06上运行17.3kW的输出功率,光束电流为2a,输入功率为40 mW,横向速度扩展为5% 。相应的频率和相互作用效率分别为0.34至16至THz和14.4%。

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