Zhang Baifu, Wang Yan, Huang Zhixing, Li Huafeng, Xu Ji, Ding Jianping
Opt Express. 2023 Dec 18;31(26):44076-44087. doi: 10.1364/OE.507388.
The geometric phase in metasurfaces follows a symmetry restriction of chirality, which dictates that the phases of two orthogonal circularly polarized waves are identical but have opposite signs. In this study, we propose a general mechanism to disrupt this symmetric restriction on the chirality of orthogonal circular polarizations by introducing mirror-symmetry-breaking meta-atoms. This mechanism introduces a new degree of freedom in spin-decoupled phase modulation without necessitating the rotation of the meta-atom. To demonstrate the feasibility of this concept, we design what we believe is a novel meta-atom with a QR-code structure and successfully showcase circular-polarization multiplexing metasurface holography. Our investigation offers what we believe to be a novel understanding of the chirality in geometric phase within the realm of nanophotonics. Moreover, it paves the way for the development of what we believe will be novel design methodologies for electromagnetic structures, enabling applications in arbitrary wavefront engineering.
超表面中的几何相位遵循手性的对称性限制,这表明两个正交圆偏振波的相位相同但符号相反。在本研究中,我们提出了一种通用机制,通过引入打破镜面对称性的超原子来破坏对正交圆偏振手性的这种对称限制。该机制在自旋解耦相位调制中引入了一个新的自由度,而无需超原子的旋转。为了证明这一概念的可行性,我们设计了一种我们认为具有二维码结构的新型超原子,并成功展示了圆偏振复用超表面全息术。我们的研究提供了我们认为在纳米光子学领域对几何相位中的手性的全新理解。此外,它为我们认为将是电磁结构的新颖设计方法的发展铺平了道路,从而能够应用于任意波前工程。