物理
拓扑(电路)
手性(物理)
角动量
引力奇点
超材料
拓扑量子数
退化(生物学)
极化(电化学)
各向同性
弗洛奎特理论
非线性系统
电介质
圆极化
旋转对称性
平面的
圆二色性
对称(几何)
稳健性(进化)
经典力学
可扩展性
位置和动量空间
拓扑简并
锥面
量子力学
束缚态
半经典物理学
空格(标点符号)
作者
Hui Hu,Chaobiao Zhou,Yukang Zhang,Meng-Xia Hu,Juntian Peng,Huawei Tang,Liang Huang,Jianlong Liu,Chunying Guan,Z. Q. Zhu,Xiaoshuang Chen,Wei Lu,xiangping Li,Zi‐Lan Deng,Guanhai Li,Jinhui Shi,Cheng‐Wei Qiu
出处
期刊:eLight
[Springer Nature]
日期:2026-03-19
卷期号:6 (1)
被引量:27
标识
DOI:10.1186/s43593-026-00126-z
摘要
Abstract Chiral metasurfaces leveraging bound states in the continuum (BICs) offer a powerful route for enhancing light–matter interactions. However, existing quasi-BIC architectures typically face a fundamental trade-off between high quality (Q) factors and wide-angle chiral operation. Most designs confine strong circular dichroism (CD) to isolated points in momentum space (k-space) and often rely on intricate three-dimensional (3D) meta-atoms, rendering them highly sensitive to fabrication imperfections and angular misalignment. Here, we experimentally realize a planar dielectric metasurface that supports a wide k-domain chirality arising from accidental BICs with a net zero-topological-charge (ZTC). By lifting a Dirac-type degeneracy through controlled in-plane and out-of-plane symmetry breaking, we induce a deterministic topological evolution in which the same-handed circularly polarized (C) points migrate toward and accumulate near the Γ point, while the opposite-handed singularities annihilate or shift to higher k-space. This mechanism delivers record-level performance—an ultrahigh Q-factor (~ 10 4 ), near-unity linear and nonlinear CD (0.99/0.999), and robust angular coverage (| k x P /2π, k y P /2π|< 0.06)—all within a fabrication-friendly, single-layer dielectric platform. These results establish a new regime for chiral photonics, unifying high chiral purity, angular robustness, and topological stability in a scalable planar architecture.
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