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Enhancing the transparency of gyrotropic magnet-less non-reciprocal metamaterials (MNMs) using slot pair particles

机译:使用缝隙对颗粒增强无回旋磁体的不可逆超材料(MNM)的透明度

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An annular slot pair particle loaded by a transistor is introduced to enhance the transparency of gyrotropic magnet-less non-reciprocal metamaterial (MNMs). Previously reported MNMs support only one gyrotropic mode, and therefore suffer from partial opacity because at least two gyrotropic modes are required to cancel out reflection in the presence of gyrotropy. The proposed MNM particle supports two gyrotropic modes: a dark mode and a bright mode. As a result, it provides the first reflection-less gyrotropic MNM. First, it is shown that the conducting ring pair particle MNM supports two modes but that only one of them is gyrotropic, which induces reflection. Next, it is shown that the single annular slot particle support only one gyrotropic mode, which leads to the same issue. Finally, the annular slot pair particle MNM is introduced and shown by full-wave simulation to support two gyrotropic modes.
机译:引入了由晶体管加载的环形槽对颗粒,以增强无回旋磁体的不可逆超材料(MNM)的透明度。先前报道的MNM仅支持一种回旋模式,因此存在部分不透明性,因为在存在回旋的情况下,至少需要两种回旋模式才能抵消反射。提出的MNM粒子支持两种回旋模式:暗模式和亮模式。结果,它提供了第一个无反射的回旋MNM。首先,显示了导电环对颗粒MNM支持两种模式,但是其中只有一种是回旋的,从而引起反射。接下来,示出了单个环形缝隙颗粒仅支持一种回旋模式,这导致相同的问题。最后,介绍了环形槽对粒子MNM并通过全波仿真显示,以支持两种回旋模式。

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