首页> 外文期刊>IEEE Transactions on Plasma Science >Approach to a Coaxial Arbitrary-Shaped Groove Cylindrical Waveguide for Application in Wideband Gyro-TWTs
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Approach to a Coaxial Arbitrary-Shaped Groove Cylindrical Waveguide for Application in Wideband Gyro-TWTs

机译:同轴陀螺槽圆柱波导在宽带陀螺TWT中的应用

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A simple but reasonable approach to the cold dispersion analysis of a coaxial arbitrary-shaped groove cylindrical waveguide is presented in the fast-wave regime for potential application in wideband gyro-traveling-wave tubes (gyro-TWTs). The unified dispersion equation of this structure is obtained by using an approximate field-theory analysis, in which the profile of the groove is approximately replaced by a series of rectangular steps, and the continued relation of the fields between two adjacent steps and the matching conditions at the interface between the groove region and central region are investigated. The dispersion characteristics of the disk-loaded structure obtained by modifying above results have been validated against those reported by Kesari Meanwhile, the dispersion characteristics of arbitrary-shaped groove, such as the triangle-groove-loaded one are proved to agree well with Computer Simulation Technology (CST) Microwave Studio simulation. The results of numerical calculations of the dispersion relation shows that the adjustment of structure parameters led to the possibility of widening the straight-line portion of $omega$ –$beta$ dispersion characteristics, which is required for wideband TWT performance in view of widening the bandwidth of resonance between the beam-mode and the waveguide-mode. Comparison of several different shape groove-loaded structures shows that the coaxial inverted trapezoid groove one shows the most potential application in wideband gyro-TWT because its transverse electric field is the greatest so that can interact effectively with the electron beam.
机译:在快速波域中,提出了一种简单而合理的方法来分析同轴任意形状沟槽圆柱波导的冷色散,以潜在地应用于宽带陀螺行波管(gyro-TWTs)。该结构的统一色散方程是通过近似场理论分析获得的,其中凹槽的轮廓被一系列矩形台阶近似替换,并且两个相邻台阶之间的场的连续关系与匹配条件研究了在凹槽区域和中心区域之间的界面处。通过修改上述结果获得的圆盘荷载结构的色散特性已与Kesari报道的相吻合,同时,任意形状的凹槽(如三角形凹槽荷载)的色散特性也被证明与计算机仿真非常吻合技术(CST)Microwave Studio模拟。色散关系的数值计算结果表明,结构参数的调整导致可能拓宽$ omega $-$ beta $色散特性的直线部分,这对于宽带TWT性能是必需的。光束模式和波导模式之间的共振带宽。几种不同形状的沟槽加载结构的比较表明,同轴倒梯形沟槽在宽带陀螺TWT中具有最大的应用潜力,因为它的横向电场最大,可以与电子束有效相互作用。

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