论文标题
无磁体非偏移层面部的非磁性偏移。
Magnet-free nonreciprocal metasurface for on-demand bi-directional phase modulation
论文作者
论文摘要
不受Lorentz互惠的不受限制,非转录元面积具有唯一能够在向前和向后传播波上编码独特的光学功能的唯一能力。迄今为止,据报道的非临界跨额叶需要外部电场或磁场偏置或依赖非线性效应,这两种效应实际上都具有挑战性。在这里,我们提出并在实验上实现基于自偏的磁化原子的无磁性,线性和被动的非偏移额。实验证明了记录传输高达77%,并且达到64度的操作角度。此外,在理论上提出并证明了以“乐高”方式调制的按需双向相调制,从而实现了一系列的非型型功能性,例如微波隔离,非互联体束转向,非偏型焦点,非摄取焦点焦点,非焦点焦点焦点,非摄取率高。该设计还可以利用各种各样的自偏旋转材料可用,将其扩展到MHz和光学频率。我们预见,这项工作中证明的非互联网跨面将对从非偏置天线和辐射群至全双工无线通信和雷达系统的应用产生重大的实际影响。
Unconstrained by Lorentz reciprocity, nonreciprocal metasurfaces are uniquely capable of encoding distinctive optical functions on forward- and backward-propagating waves. The nonreciprocal metasurfaces reported to date require external electric or magnetic field biasing or rely on nonlinear effects, both of which are challenging to practically implement. Here, we propose and experimentally realize a magnet-free, linear, and passive nonreciprocal metasurface based on self-biased magnetic meta-atoms. Record transmittance up to 77% and operation angle reaching 64 degree are experimentally demonstrated. Moreover, on-demand bidirectional phase modulation in a "LEGO-like" manner is theoretically proposed and experimentally demonstrated, enabling a cohort of nonreciprocal functionalities such as microwave isolation, nonreciprocal beam steering, nonreciprocal focusing, and nonreciprocal holography. The design can also be extended to MHz and optical frequencies, taking advantage of the wide variety of self-biased gyrotropic materials available. We foresee that the nonreciprocal metasurfaces demonstrated in this work will have a significant practical impact for applications ranging from nonreciprocal antennas and radomes to full-duplex wireless communication and radar systems.