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Criterion for Phase Shifter Operation of the Circular Waveguide with Azimuthally Magnetized Ferrite and Dielectric

机译:方位角磁化铁氧体和介质的圆波导的移相器操作准则

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The criterion under which the circular waveguide, containing a co-axially positioned dielectric cylinder and latching ferrite toroid of azimuthal magnetization, acts as a nonreciprocal digital phase shifter for the normal TE01 mode, is ferreted out. Employing it, a numerical method is elaborated that enables to reveal the impact of the material and geometry parameters of the transmission line considered on the width of the area in which it provides differential phase shift. The approach uses definite set of roots of the structure's characteristic equation, derived earlier by means of complex Kummer and Tricomi confluent hypergeometric and real zeroth and first order Bessel functions, and the real positive L̅ numbers, connected with other set of roots of the equation spoken of. For simplification it is assumed that the relative permittivities of the two layers are equal. Results are presented for a fixed value of the dielectric cylinder to guide radius ratio and a varying off-diagonal ferrite permeability tensor element.
机译:包含同轴放置的电介质圆柱体和方位磁化的自锁铁氧体磁环的圆形波导可作为标准TE的不可逆数字移相器的标准 01 模式,被剔除。利用它,阐述了一种数值方法,该方法能够揭示所考虑的传输线的材料和几何参数对它提供差分相移的区域的宽度的影响。该方法使用结构特征方程的确定根集,该特征集的根是通过复杂的Kummer和Tricomi合流超几何以及实数零阶和一阶贝塞尔函数以及实数正L̅导出的。 数字,与所说方程式的其他根集合相连。为了简化,假设两层的相对介电常数相等。给出了介电圆柱体的固定值与导向半径之比以及变化的非对角铁氧体磁导率张量元素的结果。

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