旋光
铌酸锂
手性(物理)
非线性系统
旋转(数学)
物理
圆二色性
横截面
二色性
光学
对称(几何)
偶极子
非线性光学
凝聚态物理
量子
非线性光学
联轴节(管道)
电场
光学现象
光子学
材料科学
量子光学
对称性破坏
磁场
超材料
工作(物理)
平移对称性
分子物理学
光电子学
作者
Xue Li,Zhuoqun Wang,Qingtao Fang,Ning Lu,Zhanghua Han,Weijin Chen,Yuechen Jia,Feng Chen
摘要
ABSTRACT We propose and experimentally demonstrate a lithium niobate (LN) metasurface that generates significant optical chirality simply by rotating achiral nanorods, thereby breaking mirror symmetry without the need for other complex 3D geometric structures. The chiral response originates from the non‐orthogonal coupling between electric and magnetic dipole moments, which is further enhanced through strong hybridization of transverse electric (TE) and transverse magnetic (TM) modes at specific rotation angles. Theoretical simulations reveal that a rotation angle of 30° leads to a near‐unity circular dichroism (CD) due to robust TE‐TM coupling. Experimentally, we observe a maximum linear CD of −0.37 and a strong nonlinear CD of −0.42 in second‐harmonic generation (SHG). This work presents the first experimental demonstration of intrinsic nonlinear chiroptical effects from an LN metasurface platform. The simple yet effective design, easy to fabricate and extend to other nonlinear optical crystals, establishes LN metasurfaces as a promising candidate for advanced applications in chiral sensing, polarization‑sensitive photonics, and quantum optics.
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