Real-time machine learning–enhanced hyperspectro-polarimetric imaging via an encoding metasurface

Author:

Zhang Lidan1ORCID,Zhou Chen1ORCID,Liu Bofeng1ORCID,Ding Yimin1ORCID,Ahn Hyun-Ju1ORCID,Chang Shengyuan1ORCID,Duan Yao1ORCID,Rahman Md Tarek1ORCID,Xia Tunan1,Chen Xi1,Liu Zhiwen1ORCID,Ni Xingjie1ORCID

Affiliation:

1. Department of Electrical Engineering, the Pennsylvania State University, University Park, PA 16802, United States.

Abstract

Light fields carry a wealth of information, including intensity, spectrum, and polarization. However, standard cameras capture only the intensity, disregarding other valuable information. While hyperspectral and polarimetric imaging systems capture spectral and polarization information, respectively, in addition to intensity, they are often bulky, slow, and costly. Here, we have developed an encoding metasurface paired with a neural network enabling a normal camera to acquire hyperspectro-polarimetric images from a single snapshot. Our experimental results demonstrate that this metasurface-enhanced camera can accurately resolve full-Stokes polarization across a broad spectral range (700 to 1150 nanometer) from a single snapshot, achieving a spectral sensitivity as high as 0.23 nanometer. In addition, our system captures full-Stokes hyperspectro-polarimetric video in real time at a rate of 28 frames per second, primarily limited by the camera’s readout rate. Our encoding metasurface offers a compact, fast, and cost-effective solution for multidimensional imaging that effectively uses information within light fields.

Publisher

American Association for the Advancement of Science (AAAS)

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