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Nonreciprocal Nongyrotropic Magnetless Metasurface

机译:不可逆的非回旋无磁超颖表面

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We introduce a nonreciprocal nongyrotropic magnetless metasurface. In contrast to previous nonreciprocal structures, this metasurface does not require a biasing magnet, and is therefore lightweight and amenable to integrated circuit fabrication. Moreover, it does not induce Faraday rotation, and hence does not alter the polarization of waves, which is a desirable feature in many nonreciprocal devices. The metasurface is designed according to a Surface-Circuit-Surface architecture and leverages the inherent unidirectionality of transistors for breaking time reversal symmetry. Interesting features include transmission gain as well as broad operating bandwidth and angular sector operation. It is finally shown that the metasurface is bianisotropic in nature, with nonreciprocity due to the electric-magnetic coupling parameters, and structurally equivalent to a moving uniaxial metasurface.
机译:我们介绍了一个不可逆的非回旋无磁超颖表面。与先前的不可逆结构相反,该超颖表面不需要偏置磁体,因此重量轻且适合集成电路制造。此外,它不会引起法拉第旋转,因此不会改变波的极化,这是许多不可逆设备的理想功能。超表面是根据表面电路表面架构设计的,并利用晶体管固有的单向性来打破时间反转对称性。有趣的功能包括传输增益以及宽的工作带宽和角扇区操作。最终表明,超颖表面本质上是各向异性的,由于电磁耦合参数而具有不可逆性,并且在结构上等同于移动的单轴超颖表面。

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