Li Hongju, Zhou Hongmiao, Wei Gangao, Xu Hangsheng, Qin Meng, Liu Jianqiang, Wu Feng
School of Physics, Hefei University of Technology, Hefei, Anhui 230009, China.
School of Science, Jiujiang University, Jiujiang 332005, China.
Nanoscale. 2023 Apr 6;15(14):6636-6644. doi: 10.1039/d3nr00055a.
Optical metasurfaces with high-quality-factor resonances and selective chirality simultaneously are desired for nanophotonics. Here, an all-dielectric planar chiral metasurface is theoretically proposed and numerically proved to support the astonishing symmetry-protected bound state in the continuum (BIC), due to the preserved π rotational symmetry around the axis and up-down mirror symmetry simultaneously. Importantly, such BIC is a vortex polarization singularity enclosed by elliptical eigenstate polarizations with non-vanishing helicity, owing to the broken in-plane mirror symmetry. Under the oblique incidence, companied by the BIC transforming into a quasi-BIC (Q-BIC), the strong extrinsic chirality manifests. Assisted by the single-port critical coupling, the planar metasurface can selectively and near-perfectly absorb one circularly polarized light but non-resonantly reflect its counterparts. The circular dichroism (CD) approaching 0.812 is achieved. Intriguingly, the sign of CD (namely, the handedness of the chiral metasurface) can be flexibly manipulated only varying the azimuthal angle of incident light, due to the periodic helicity sign flip in eigen polarizations around the BIC. Numerical results are consistent with the coupled-mode theory and multipole decomposition method. The spin-selective metasurface absorber empowered by the physics of chiral Q-BICs undoubtedly may promise various applications such as optical filters, polarization detectors, and chiral imaging.
纳米光子学需要同时具有高品质因子共振和选择性手性的光学超表面。在此,理论上提出并通过数值证明了一种全介质平面手性超表面,由于同时保留了围绕z轴的π旋转对称性和上下镜面对称性,该超表面支持连续统中令人惊讶的对称性保护束缚态(BIC)。重要的是,由于面内镜面对称性的破坏,这种BIC是一个由具有非零螺旋度的椭圆本征态极化包围的涡旋极化奇点。在斜入射下,伴随着BIC转变为准BIC(Q-BIC),强外在手性得以体现。在单端口临界耦合的辅助下,平面超表面可以选择性地且近乎完美地吸收一种圆偏振光,而非共振地反射其对应光。实现了接近0.812的圆二色性(CD)。有趣的是,由于围绕BIC的本征极化中周期性的螺旋度符号翻转,仅通过改变入射光的方位角就可以灵活地操纵CD的符号(即手性超表面的手性)。数值结果与耦合模理论和多极分解方法一致。由手性Q-BIC物理特性赋能的自旋选择性超表面吸收器无疑有望应用于诸如光学滤波器、偏振探测器和手性成像等各种领域。