多极展开
四极
物理
太赫兹辐射
偶极子
圆二色性
束缚态
旋转
点反射
凝聚态物理
四极磁铁
磁偶极子
磁场
圆极化
不对称
超材料
镜像对称
对称(几何)
功勋
磁圆二色性
光学
极化(电化学)
电场
对称性破坏
Q系数
圆柱
手性(物理)
手征对称性
光子学
分子物理学
作者
Xinrui Guo,Jingwei Lv,Changli Liu,Qin Yu,Jianing Shi,Qiang Liu,Jianxin Wang,Weibo Liu,P.L. Chu
标识
DOI:10.1088/1674-1056/ae516d
摘要
Abstract The combination of high-quality-factor ( Q -factor) bound states in the continuum (BIC) and chiral metasurfaces has attracted much attention in the field of photonics. Here, we design and analyze a “sandwich” all-dielectric metasurface with two silicon cross-shaped cylinders distributed on the upper and lower surfaces of the silica. The transition from symmetry-protected BIC to chiral quasi-BIC (QBIC) is achieved by innovatively breaking both the mirror symmetry and the in-plane inversion symmetry of the structure, resulting in a transmittance-ratio circular dichroism (RCD) close to unity and a high Q -factor. In particular, three chiral QBICs (QBIC1, QBIC2, and QBIC3) are realized in the terahertz band without increasing the complexity of the structure at each layer. Multipole decomposition and near-field analysis demonstrate that QBIC1 and QBIC2 are dominated by the toroidal dipole and magnetic quadrupole, while QBIC3 is mainly affected by the electric quadrupole and magnetic quadrupole. In addition, the presence of positive and negative states due to the RCD values of the structure suggests a spin selectivity for different frequency bands. Theoretical assessment shows a maximum Q -factor of 3.94 × 10 4 , a maximum sensitivity of 245 GHz per refractive index unit (RIU), and a figure of merit of 7927 RIU −1 . The results reveal a novel approach for selectively modulating circularly polarized light, demonstrating significant potential in biomolecular detection, high-spectral-resolution chiral biosensors, and chemical analysis.
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