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首页> 外文期刊>Journal of Electromagnetic Waves and Applications >Design of confocal waveguide interaction structure for a 220GHz gyro-TWT
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Design of confocal waveguide interaction structure for a 220GHz gyro-TWT

机译:220GHz Gyro-TWT的共聚焦波导互动结构设计

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摘要

The high frequency characteristics of confocal waveguide interaction structure are studied, by which the confocal radius and mirror width of the confocal 220GHz gyro-traveling-wave tube (gyro-TWT) are obtained. The characteristics of coupled dispersion curve, absolute instability, and backward wave oscillation are analyzed. Based on such analysis, methods that are using two lossy severs to suppress backward wave oscillation in 220GHz gyro-TWT are put forward. Moreover, the experiment and numerical simulation of interaction structure of gyro-TWT with one lossy sever and the full three-dimensional numerical simulation of interaction structure of 220GHz gyro-TWT with two lossy severs are carried out. The simulation results with two lossy severs show a peak output power of 10.7kW, a peak efficiency of 11.65%, a peak gain of 25.5dB, and a 1dB bandwidth of 2.3GHz.
机译:研究了共聚焦波导相互作用结构的高频特性,通过该耦合半径和共聚焦220GHz陀螺管(GYRO-TWT)的镜面宽度。 分析了耦合色散曲线,绝对不稳定性和反向波振荡的特性。 基于这种分析,提出了使用两个有损的方法来抑制220GHz Gyro-TWT的反向波振荡。 此外,陀螺TWT的实验和数值模拟与一个有损的断开和220GHz陀螺TWT相互作用结构的完整三维数值模拟,具有两个有损的两个有损的SEVERS。 仿真结果具有两个有损的SEVERS显示峰值输出功率为10.7kW,峰值效率为11.65%,峰值增益为25.5dB,1dB带宽为2.3GHz。

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