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Dual-ferrite slot line for broadband, high-nonreciprocity phase shifters

机译:用于宽带,高互易性移相器的双铁氧体缝隙线

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A phase shifting structure that exhibits both broadband operation and high nonreciprocity is presented. This structure comprises a slot line between two oppositely magnetized ferrite substrates. A full-wave spectral-domain analysis is used, where Green's functions are formulated using a transmission matrix approach. By eliminating the use of relatively thick high-dielectric substrates, a bandwidth of 3:1 and a differential phase of 50 degrees /cm are feasible. The geometry of the present structure can be optimized to increase both the nonreciprocity and the bandwidth. The characteristic impedance of the slot line is presented and shows a strong dependence on the slot width and the state of ferrite magnetization. The addition of thin layers of high-dielectric material increases the differential phase to over 100 degrees /cm without significantly reducing the bandwidth. These layers were found to reduce the variation of characteristic impedance versus the ferrite magnetization.
机译:提出了一种既显示宽带工作又显示高互易性的相移结构。该结构包括在两个相对磁化的铁氧体衬底之间的缝隙线。使用全波频谱域分析,其中格林函数使用传输矩阵方法来表示。通过消除使用相对较厚的高介电基板,可以实现3:1的带宽和50度/ cm的微分相位。可以优化本结构的几何形状以增加不可逆性和带宽。给出了缝隙线的特性阻抗,并显示出对缝隙宽度和铁氧体磁化状态的强烈依赖性。高介电材料薄层的添加将差分相位增加到超过100度/ cm,而不会显着降低带宽。发现这些层相对于铁氧体磁化减小了特征阻抗的变化。

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