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March 28, 2026Optica5 citationsOpen Access

Integrated Spectropolarimeter by Metasurface-Based Diffractive Optical Networks

JQJumin QiuNanchang UniversityTLTingting LiuCXChenxuan XiangNanchang University

Key Points

  • The aim is to develop a compact spectropolarimeter that combines spectral and polarimetric measurements using metasurfaces.
  • Developed a device based on metasurface technology for simultaneous optical measurements.
  • Encoded spectral and polarization data into intensity distributions for analysis.
  • Utilized a deep neural network for decoding the measurements using a single-shot approach.
  • Validated the design with experiments confirming its accuracy over a broad wavelength range.
  • Achieved high-accuracy reconstruction of spectral compositions and Stokes parameters.
  • Demonstrated effective imaging capabilities of the device.
  • Developed a chip-integrated sensor prototype using a commercial CMOS image sensor.

Abstract

Conventional spectrometer and polarimeter systems rely on bulky optics, fundamentally limiting compact integration and hindering multi-dimensional optical sensing capabilities. Here, we propose a spectropolarimeter enabled by metasurface-based diffractive optical networks that simultaneously performs spectrometric and polarimetric measurements in a compact device. By leveraging the wavelength- and polarization-dependent phase modulation of metasurfaces, our system encodes the spectral and polarization information of incident light into spatially resolved intensity distributions, which are subsequently decoded by a trained deep neural network, enabling simultaneous high-accuracy reconstruction of both spectral compositions and Stokes parameters through a single-shot measurement. Experiments validate the proposed network's accurate reconstruction of the spectral and polarization information across a broad wavelength range, and further confirm its imaging capability. Notably, we demonstrate a chip-integrated sensor prototype combing both measurement functionalities into a commercial CMOS image sensor. This integrated platform provides a compact solution for on-chip multi-dimensional optical sensing, holding significant potential for versatile sensing, biomedical diagnosis, and industrial metrology.

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Cite This Study

Qiu et al. (2026) studied this question.

synapsesocial.com/papers/69c76fff8bbfbc51511e0551https://doi.org/10.1364/optica.583686
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