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Beam–Wave Interaction Analysis Inside an Azimuthally Partitioned Axially Periodic Disk-Loaded Coaxial Structure for Bifrequency MILO

机译:梁波相互作用分析在轴向周期性磁盘加载的同轴结构方方方向上分隔,用于米洛

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In this article, the electromagnetic (or RF) behavior of the azimuthally partitioned axially periodic metal disk-loaded coaxial structure was investigated using an equivalent circuit approach in the presence of the electron beam. In the analysis, the linearized Maxwell's fluid equation (also known as Vlasov-Maxwell's equation) was used to analyze the region in which the electron beam was present. The expression for the equivalent series inductance and shunt capacitance per unit length for the equivalent transmission line was derived in the electron beam present and absent case. The derived expressions include all the harmonics effects present inside the structure. Furthermore, the expression of the dispersion relation and temporal growth rate (TGR) was derived using the calculated equivalent series inductance and equivalent shunt capacitance. The output RF power and energy were also calculated analytically and validated through the PIC simulation. The results were compared with the already reported literature, and the relative error between them was below 5%. In addition, the effect of different beam parameters on the TGR behavior was also analyzed.
机译:在本文中,在电子束存在下使用等效电路方法研究方位角分隔的轴向周期性金属盘装载同轴结构的电磁(或RF)行为。在分析中,使用线性化的麦克斯韦尔的流体方程(也称为Vlasov-Maxwell等式)来分析所存在电子束的区域。在当前情况和不存在的情况下,导出每单位传输线的每单位长度的等效串联电感和分流电容的表达。衍生的表达式包括结构内的所有谐波效果。此外,使用计算的等效序列电感和等效分流电容来导出分散关系和时间生长速率(TGR)的表达。还通过PIC模拟进行了分析和验证了输出RF功率和能量。结果与已经报道的文献进行了比较,它们之间的相对误差低于5%。此外,还分析了不同光束参数对TGR行为的影响。

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