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仅归因于等离子体超表面手性的二次谐波产生光学旋转

Second-Harmonic Generation Optical Rotation Solely Attributable to Chirality in Plasmonic Metasurfaces.

作者信息

Collins Joel T, Hooper David C, Mark Andrew G, Kuppe Christian, Valev Ventsislav K

机构信息

Centre for Photonics and Photonic Materials, and Centre for Nanoscience and Nanotechnology, Department of Physics , University of Bath , Bath , BA2 7AY , United Kingdom.

Max Planck Institute for Intelligent Systems , Heisenbergstraße 3 , 70569 Stuttgart , Germany.

出版信息

ACS Nano. 2018 Jun 26;12(6):5445-5451. doi: 10.1021/acsnano.8b00601. Epub 2018 Jun 7.

Abstract

Chiral plasmonic nanostructures, those lacking mirror symmetry, can be designed to manipulate the polarization of incident light resulting in chiroptical (chiral optical) effects such as circular dichroism (CD) and optical rotation (OR). Due to high symmetry sensitivity, corresponding effects in second-harmonic generation (SHG-CD and SHG-OR) are typically much stronger in comparison. These nonlinear effects have long been used for chiral molecular analysis and characterization; however both linear and nonlinear optical rotation can occur even in achiral structures, if the structure is birefringent due to anisotropy. Crucially, chiroptical effects resulting from anisotropy typically exhibit a strong dependence on structural orientation. Here we report a large second-harmonic generation optical rotation of ±45°, due to intrinsic chirality in a highly anisotropic helical metamaterial. The SHG intensity is found to strongly relate to the structural anisotropy; however, the angle of SHG-OR is invariant under sample rotation. We show that by tuning the geometry of anisotropic nanostructures, the interaction between anisotropy, chirality, and experimental geometry can allow even greater control over the chiroptical properties of plasmonic metamaterials.

摘要

手性等离子体纳米结构,即那些缺乏镜像对称性的结构,可以被设计用来操纵入射光的偏振,从而产生诸如圆二色性(CD)和旋光性(OR)等手性光学效应。由于具有高对称性敏感性,相比之下,二次谐波产生中的相应效应(SHG-CD和SHG-OR)通常要强得多。这些非线性效应长期以来一直用于手性分子的分析和表征;然而,如果结构由于各向异性而具有双折射,即使在非手性结构中也会出现线性和非线性旋光性。至关重要的是,由各向异性引起的手性光学效应通常表现出对结构取向的强烈依赖性。在这里,我们报道了由于高度各向异性螺旋超材料中的固有手性而产生的高达±45°的大二倍频产生旋光性。发现二次谐波产生强度与结构各向异性密切相关;然而,二次谐波产生旋光性的角度在样品旋转下是不变的。我们表明,通过调整各向异性纳米结构的几何形状,各向异性、手性和实验几何形状之间的相互作用可以实现对等离子体超材料手性光学性质的更大控制。

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