TY  - JOUR
T1  - Metasurface-Enabled Dual-Channel Single-Pixel Polarimetric Imaging
AU  - Xiong, Haoran
AU  - Zhao, Ruizhe
AU  - Tian, Chenyi
AU  - Li, Xin
AU  - Wang, Bo
AU  - Li, Junjie
AU  - Huang, Lingling
N1  - Publisher Copyright:
© 2025 Wiley-VCH GmbH.
PY  - 2025
Y1  - 2025
N2  - 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.
AB  - 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.
KW  - compressed sensing
KW  - dielectric metasurfaces
KW  - polarimetric imaging
KW  - single-pixel imaging
UR  - http://www.scopus.com/pages/publications/105016501049
U2  - 10.1002/lpor.202501878
DO  - 10.1002/lpor.202501878
M3  - Article
AN  - SCOPUS:105016501049
SN  - 1863-8880
JO  - Laser and Photonics Reviews
JF  - Laser and Photonics Reviews
ER  -