等离子体子
物理
二次谐波产生
谐波
对称(几何)
高次谐波产生
各向同性
非线性系统
表面二次谐波产生
对称性破坏
非线性光学
极化(电化学)
齐次空间
旋转对称性
经典力学
凝聚态物理
量子力学
几何学
化学
机械
数学
电压
物理化学
激光器
作者
Shu‐Mei Chen,Guixin Li,Franziska Zeuner,Wing Han Wong,Edwin Yue‐Bun Pun,Thomas Zentgraf,Kok Wai Cheah,Shuang Zhang
标识
DOI:10.1103/physrevlett.113.033901
摘要
Nonlinear processes are often governed by selection rules imposed by the symmetries of the molecular configurations. The most well-known examples include the role of centrosymmetry breaking for the generation of even harmonics, and the selection rule related to the rotational symmetry in harmonic generation for fundamental beams with circular polarizations. While the role of centrosymmetry breaking in second harmonic generation has been extensively studied in plasmonic systems, the investigation of selection rules pertaining to circular polarization states of harmonic generation is limited to crystals, i.e., symmetries at the atomic level. In this Letter we demonstrate the rotational symmetry dependent third harmonic generation from nonlinear plasmonic metacrystals. We show that the selection rule can be imposed by the rotational symmetry of metacrystals embedded into an isotropic organic nonlinear thin film. The results presented here may open new avenues for designing symmetry-dependent nonlinear optical responses with tailored plasmonic nanostructures.
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