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Iterative Method for Differential Phase Shift Computation in the Azimuthally Magnetized Circular Ferrite Waveguide

机译:方位角磁化圆形铁氧体波导差分相移计算的迭代方法

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A reiterative technique is developed for finding in normalized form the differential phase shift provided by the circular waveguide, completely filled with azimuthally magnetized ferrite which propagates normal TE_01 mode. It consists in a repeated numerical solution of the structure's characteristic equation, derived in terms of a definite complex Kummer confluent hypergeometric function, followed by a computation of the normalized guide radius and phase constant at a fixed value of the off-diagonal ferrite permeability tensor element. The idea of the method is to vary arbitrarily or according to a certain scheme the imaginary part of the first complex parameter of wave function until the counted numerical equivalent of the guide radius coincides with a chosen one of the same with a prescribed accuracy. The relevant value of the phase constant is accepted as the one, looked for. Calculations are performed for both signs of the imaginary part (of the ferrite magnetization), yielding the phase shift sought. The numerically presented results are discussed.
机译:开发了一种迭代技术,用于以归一化形式查找由圆形波导提供的差分相移,该波导完全填充了传播正常TE_01模式的方位磁化铁氧体。它包含对结构特征方程式的重复数值解,该方程式是通过确定的复杂Kummer汇合超几何函数得出的,然后在非对角铁氧体磁导率张量元素的固定值下计算归一化的导向半径和相位常数。该方法的思想是任意改变波函数的第一复参数的虚部或根据特定方案改变,直到所计算的导引半径的数值等效值与选定的导引半径的数值等效值达到规定的精度为止。寻找相常数的相关值作为一个值。对(铁氧体磁化的)虚部的两个符号进行计算,得出所求出的相移。讨论了数值表示的结果。

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