环面
圆二色性
平面的
物理
手性(物理)
偶极子
光子学
手征对称性
平面手性
对称(几何)
凝聚态物理
二色性
对称性破坏
超材料
磁偶极子
拓扑(电路)
铁磁性
光学
磁圆二色性
局部对称性
圆极化
作者
Shijie Kang,Jae Su Yu,Boyuan Ge,Jiayu Fan,Ailin Luo,Yuan Yao,X. D. Zhang,Kun Qin,Bo Hou,Haitao Li,Xiaoxiao Wu
标识
DOI:10.48550/arxiv.2505.04998
摘要
Circular dichroism (CD), arising from spin-selective light-matter interactions controlled by chirality, is critical for advanced applications such as chiral imaging and ultrasensitive biosensing. However, CD of chiral natural materials is inherently constrained owing to molecular symmetry and thermodynamic stability. Recently, artificially engineered metasurfaces incorporating chiral quasi-bound states in the continuum (Q-BICs) have emerged as a promising solution, which enables near-unity CD responses. However, their current designs heavily rely on complex three-dimensional geometries, posing significant challenges for integration with planar on-chip platforms. To address the stringent challenges, we demonstrate a truly planar metasurface that achieves giant intrinsic chiral responses by utilizing a chiral Q-BIC dominated by out-of-plane toroidal dipoles (Tz). With deep-subwavelength (λ/20) thickness, our metasurface exhibits outstanding intrinsic CD values in both simulations (>0.90) and experiments (~0.80). Moreover, in contrast to previous electric or magnetic chiral Q-BICs, the toroidal Q-BIC produces a rapidly switching CD response - transitioning sharply between positive and negative giant CD values within ~0.2 GHz, and the switching is highly sensitive to small oblique incidence of opposite angles. Therefore, our scheme provides a planar platform for studying chiral light-matter interactions involving toroidal dipoles, important for future development of polarization- and angle-sensitive photonic and optoelectronic devices.
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