TY - JOUR
T1 - Lightweight Spectro-Polarimetric Imaging Enabled by Freely Height-Varying Metasurface via Two-Photon Polymerization Lithography
AU - He, Haoyang
AU - Tang, Xihui
AU - Liu, Yiman
AU - Zhao, Ruizhe
AU - Lin, Jingpu
AU - Zheng, Xuehan
AU - Li, Xin
AU - Jiang, Qiang
AU - Zhang, Nan
AU - Li, Xiaowei
AU - Wang, Yongtian
AU - Huang, Lingling
N1 - Publisher Copyright:
© 2026 Wiley-VCH GmbH.
PY - 2026/6/25
Y1 - 2026/6/25
N2 - The pursuit of high-dimensional optical information, particularly spectrum and polarization, has been a persistent goal in both scientific research and engineering applications. However, conventional spectro-polarimetric imaging systems are typically constrained by bulky hardware, complex optical configurations, and heavy computational burdens, which severely limit their deployment on miniaturized platforms. In this study, we propose a lightweight spectro-polarimetric imaging method enabled by a height-varying metasurface via two-photon polymerization lithography, where out-of-plane height modulation and in-plane geometric shapes are jointly exploited to achieve a broader spectral modulation range and different polarimetric responses. By combining the designed metasurface with a newly built reconstruction algorithm, spectro-polarimetric images are successfully reconstructed from a single grayscale image, with an average polarization angle error of 3.02° for uniform objects and an average PSNR of 35.86 dB, SSIM of 0.93, and spectrum fidelity of 98.45% for a complex object, demonstrating the high reconstruction quality of the proposed method. This work provides a compact and efficient route toward snapshot acquisition of high-dimensional light information, offering strong potential for integration into miniaturized imaging platforms.
AB - The pursuit of high-dimensional optical information, particularly spectrum and polarization, has been a persistent goal in both scientific research and engineering applications. However, conventional spectro-polarimetric imaging systems are typically constrained by bulky hardware, complex optical configurations, and heavy computational burdens, which severely limit their deployment on miniaturized platforms. In this study, we propose a lightweight spectro-polarimetric imaging method enabled by a height-varying metasurface via two-photon polymerization lithography, where out-of-plane height modulation and in-plane geometric shapes are jointly exploited to achieve a broader spectral modulation range and different polarimetric responses. By combining the designed metasurface with a newly built reconstruction algorithm, spectro-polarimetric images are successfully reconstructed from a single grayscale image, with an average polarization angle error of 3.02° for uniform objects and an average PSNR of 35.86 dB, SSIM of 0.93, and spectrum fidelity of 98.45% for a complex object, demonstrating the high reconstruction quality of the proposed method. This work provides a compact and efficient route toward snapshot acquisition of high-dimensional light information, offering strong potential for integration into miniaturized imaging platforms.
KW - height-varying metasurface
KW - spectro-polarimetric imaging
KW - two-photon polymerization lithography
UR - https://www.scopus.com/pages/publications/105040776604
U2 - 10.1002/adfm.76173
DO - 10.1002/adfm.76173
M3 - Article
AN - SCOPUS:105040776604
SN - 1616-301X
VL - 36
JO - Advanced Functional Materials
JF - Advanced Functional Materials
IS - 51
M1 - e76173
ER -