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Exploration of a Double-Tapered Disc-Loaded Circular Waveguide for a Wideband Gyro-TWT

机译:宽带陀螺TWT双锥盘式圆波导的探索

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The analysis of a disc-loaded circular waveguide interaction structure of a gyro-traveling-wave-tube (gyro-TWT) considering standing and propagating mode harmonics in the disc-occupied and disc-free regions, respectively, gave the beam-absent dispersion relation of the waveguide. The axial phase propagation constant predicted by the dispersion relation was substituted into the gyro-TWT gain-equation, the latter obtainable from the beam-present dispersion relation of the device. A method of double-tapering the structure dimensions was proposed that consists in tapering the disc-hole radius to distribute the midband frequency of amplification over a wide range of frequencies, and simultaneously tapering the waveguide-wall radius to compensate for gain reduction at band edges due to disc-hole radius tapering. The method has demonstrated wide device bandwidths at relatively large gain values.
机译:分别考虑了在圆盘占据区域和无圆盘区域中的驻波和传播模态谐波的陀螺行进波管(gyro-TWT)的圆盘加载圆形波导相互作用结构的分析,得出了无光束的色散波导的关系。由色散关系预测的轴向相位传播常数被代入陀螺仪-TWT增益方程,后者可从装置的束存在色散关系获得。提出了一种对结构尺寸进行双锥度化的方法,该方法包括逐渐减小圆盘孔半径以在宽范围的频率上分配放大的中频带频率,并同时逐渐减小波导壁半径以补偿频带边缘处的增益降低由于盘孔半径逐渐变小。该方法已证明在相对较大的增益值下具有较宽的设备带宽。

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