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用于成像、量子和传感应用的非线性超表面研究进展。

Advances in nonlinear metasurfaces for imaging, quantum, and sensing applications.

作者信息

Zheng Ze, Rocco Davide, Ren Hang, Sergaeva Olga, Zhang Yipei, Whaley K Birgitta, Ying Cuifeng, de Ceglia Domenico, De-Angelis Constantino, Rahmani Mohsen, Xu Lei

机构信息

Department of Engineering, Advanced Optics and Photonics Laboratory, School of Science Technology, Nottingham Trent University, Nottingham, UK.

Department of Information Engineering, University of Brescia, Brescia, Italy.

出版信息

Nanophotonics. 2023 Nov 21;12(23):4255-4281. doi: 10.1515/nanoph-2023-0526. eCollection 2023 Nov.

Abstract

Metasurfaces, composed of artificial meta-atoms of subwavelength size, can support strong light-matter interaction based on multipolar resonances and plasmonics, hence offering the great capability of empowering nonlinear generation. Recently, owing to their ability to manipulate the amplitude and phase of the nonlinear emission in the subwavelength scale, metasurfaces have been recognized as ultra-compact, flat optical components for a vast range of applications, including nonlinear imaging, quantum light sources, and ultrasensitive sensing. This review focuses on the recent progress on nonlinear metasurfaces for those applications. The principles and advances of metasurfaces-based techniques for image generation, including image encoding, holography, and metalens, are investigated and presented. Additionally, the overview and development of spontaneous photon pair generation from metasurfaces are demonstrated and discussed, focusing on the aspects of photon pair generation rate and entanglement of photon pairs. The recent blossoming of the nonlinear metasurfaces field has triggered growing interest to explore its ability to efficiently up-convert infrared images of arbitrary objects to visible images and achieve spontaneous parametric down-conversion. This recently emerged direction holds promising potential for the next-generation technology in night-vision, quantum computing, and biosensing fields.

摘要

超表面由亚波长尺寸的人工元原子组成,能够基于多极共振和等离激元学支持强光与物质的相互作用,从而具备强大的增强非线性产生的能力。近来,由于超表面能够在亚波长尺度上操控非线性发射的幅度和相位,它已被视作适用于广泛应用的超紧凑平面光学元件,包括非线性成像、量子光源和超灵敏传感。本综述聚焦于超表面在这些应用方面的近期进展。研究并介绍了基于超表面的图像生成技术的原理和进展,包括图像编码、全息术和超构透镜。此外,展示并讨论了超表面自发产生光子对的概况和发展,重点关注光子对产生率和光子对纠缠等方面。非线性超表面领域最近的蓬勃发展引发了人们越来越浓厚的兴趣,去探索其将任意物体的红外图像高效上转换为可见光图像以及实现自发参量下转换的能力。这一最近出现的方向在夜视、量子计算和生物传感领域的下一代技术中具有广阔的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec2c/11501303/9afcc7dd5775/j_nanoph-2023-0526_fig_001.jpg

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