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四原子超表面的非线性矢量全息术。

Nonlinear vectorial holography with quad-atom metasurfaces.

机构信息

Department of Materials Science and Engineering, Southern University of Science and Technology, Shenzhen 518055, China.

Department of Physics and Institute of Advanced Materials, Hong Kong Baptist University, Hong Kong, China.

出版信息

Proc Natl Acad Sci U S A. 2022 May 31;119(22):e2204418119. doi: 10.1073/pnas.2204418119. Epub 2022 May 26.

Abstract

Vectorial optical holography represents a solution to control the polarization and amplitude distribution of light in the Fourier space. While vectorial optical holography has been experimentally demonstrated in the linear optical regime, its nonlinear counterpart, which can provide extra degrees of freedom of light-field manipulation through the frequency conversion processes, remains unexplored. Here, we experimentally demonstrate the nonlinear vectorial holography through the second harmonic generation process on a quad-atom plasmonic metasurface. The quad-atom metasurface consists of gold meta-atoms with threefold rotational symmetry. Based on the concept of nonlinear geometric phase, we can simultaneously manipulate the phase and amplitude of the left and right circularly polarized second harmonic waves generated from the quad-atom metasurface. By superposing the two orthogonal polarization components, the quad-atom metasurface can produce nonlinear holographic images with vectorial polarization distributions. The proposed metasurface platform may have important applications in vectorial polarization nonlinear optical source, high-capacity optical information storage, and optical encryption.

摘要

矢量光学全息术提供了一种在傅里叶空间中控制光的偏振和振幅分布的解决方案。虽然矢量光学全息术已经在线性光学领域得到了实验验证,但它的非线性对应物,通过频率转换过程可以提供额外的光场操控自由度,仍然没有被探索。在这里,我们通过在四原子等离子体超表面上的二次谐波产生过程来实验演示非线性矢量全息术。四原子超表面由具有三重旋转对称性的金亚原子组成。基于非线性几何相位的概念,我们可以同时操纵从四原子超表面产生的左旋和右旋圆偏振二次谐波的相位和振幅。通过叠加两个正交偏振分量,四原子超表面可以产生具有矢量偏振分布的非线性全息图像。所提出的超表面平台在矢量偏振非线性光学光源、大容量光信息存储和光学加密等方面可能具有重要应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e013/9295796/61fa27123894/pnas.2204418119fig01.jpg

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