旋光法
极化(电化学)
频道(广播)
图像分辨率
多路复用
遥感
计算机科学
影像学
雷达成像
光学成像
鬼影成像
合成孔径雷达
流线、条纹线和路径线
迭代重建
光学
计算机视觉
正交偏振光谱成像
物理
双偏振干涉法
人工智能
振幅
编码(内存)
相位成像
空间频率
成像技术
医学影像学
空间复用
光谱成像
作者
Haoran Xiong,Ruizhe Zhao,Chenyi Tian,Xin Li,Bo Wang,Junjie Li,Lingling Huang
标识
DOI:10.1002/lpor.202501878
摘要
Abstract Single‐pixel imaging has garnered significant interest across a variety of research domains due to its cost‐effectiveness and adaptability. Metasurfaces, with their subwavelength‐scale structures, offer flexible control ability, enabling them to be an ideal platform for single‐pixel imaging applications. This study introduces an innovative single‐pixel imaging technique that leverages polarization multiplexing metasurfaces to enable dual orthogonal polarization channel imaging from a single measurement. By incorporating four units with varying structural dimensions, 2‐bit encoding of the incident light is achieved. Through spatial shifting, images corresponding to different polarization channels with various spatial amplitude masks are encoded independently, resulting in high‐quality single‐pixel imaging. This multifunctional metasurface streamlines conventional polarization‐based single‐pixel systems, reducing both time and spatial costs with a single measurement, while achieving a spatial resolution of 4.38 µm in reconstructed images. This innovative approach to polarimetric single‐pixel imaging holds great potential for optical detection, target recognition, aviation, and other advanced applications.
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