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Analysis of Open-Ended Circular Waveguides Using Physical Optics and Incomplete Hankel Functions Formulation

机译:使用物理光学和不完整的汉克尔函数公式分析开放式圆形波导

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The spatial distribution of the electromagnetic field excited in semi-infinite open-ended circular waveguides is analyzed using a physical optics (PO) and incomplete Hankel functions formulation. Using the incomplete Hankel functions, the PO surface integral employed to compute the field quantities is reduced to a simple line integral along the waveguide contour. Such a superposition integral, which describes the elementary field contributions having spherical and cylindrical character, is then evaluated in closed analytical form along the waveguide axis. It is shown that cylindrical waves are generated by the surface currents flowing on the waveguide walls, while the spherical waves are produced by the currents and charges excited at the waveguide truncation. Cylindrical and spherical waves are responsible for the field synthesis in terms of waveguided modes and scattered fields at the waveguide mouth. Numerical examples, demonstrating the accuracy of said field representation in the near- and far-field region of truncated circular waveguides, are finally provided.
机译:使用物理光学(PO)和不完整的汉克尔函数公式分析了在半无限开放式圆形波导中激发的电磁场的空间分布。使用不完整的汉克尔函数,用于计算场量的PO表面积分沿波导轮廓减小为一条简单的线积分。然后以波导路径的封闭分析形式评估这种叠加积分,该叠加积分描述具有球形和圆柱形特征的基本场贡献。结果表明,圆柱波是由在波导壁上流动的表面电流产生的,而球形波是由在波导截断处激发的电流和电荷产生的。圆柱波和球形波负责波导波模和波导口处的散射场的场合成。最终提供了数值示例,其证明了在截短的圆形波导的近场和远场区域中所述场表示的准确性。

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