各向异性
极化(电化学)
物理
热发射
荧光
圆极化
热的
手征对称性
荧光各向异性
对称(几何)
硅
凝聚态物理
纳米结构
辐射
光学
光电子学
热涨落
光发射
发射光谱
分子物理学
线极化
激发极化
液晶
正交偏振光谱成像
点反射
纳米尺度
镜像对称
材料科学
作者
Yuwei Sun,Zhipeng Hu,Mengqi Liu,Jianzhong Chen,Dmitrii Gromyko,Kezhang Shi,Lin Wu,Yi Jin,Sailing He,Cheng-Wei Qiu
标识
DOI:10.1038/s41467-026-68728-2
摘要
Manipulating emission polarization is crucial for advanced applications such as polarized fluorescence and lasing, thermal radiation control, stereochemistry and spintronics. Existing approaches for generating circularly polarized emission primarily rely on nanostructures with true chirality, where the far-field polarization at the Γ point is believed to require out-of-plane symmetry breaking. This raises a question: can an intrinsically achiral metasurface that preserves out-of-plane symmetry generate chiral emission? Here, we introduce the concept of anisotropic continuum, defined as a continuum state exhibiting distinct responses for orthogonal polarizations of incidence, as a new degree of freedom for intrinsically achiral metasurfaces. In such metasurfaces, chiral emission arises from manipulating the anisotropic continuum together with the metasurface's in-plane perturbations. Degrees of circular polarization of 0.83 for upward emission and -0.9 for downward emission are achieved experimentally by integrating the fabricated silicon metasurface with fluorescent organic dyes. Our findings not only address a long-standing gap in the understanding of structural chirality, but also open new opportunities for high-performance applications in polarized fluorescence and thermal emission.
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