Phase-shifting structured illumination with polarization-encoded metasurface

Fuente: arXiv
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Autori principali: Yu, Linzhi, Pietila, Jesse, Singh, Haobijam Johnson, Caglayan, Humeyra
Natura: Preprint
Pubblicazione: 2025
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author Yu, Linzhi
Pietila, Jesse
Singh, Haobijam Johnson
Caglayan, Humeyra
author_facet Yu, Linzhi
Pietila, Jesse
Singh, Haobijam Johnson
Caglayan, Humeyra
contents Phase-shifting structured illumination is a powerful technique used across diverse imaging modalities, including 3D surface measurement, quantitative phase imaging, and super-resolution microscopy. However, conventional implementations often rely on mechanically driven or optoelectronically complex systems, limiting their compactness, stability, and integration. Here, we present a polarization-controlled dielectric metasurface that generates phase-shifting fringe patterns in the visible spectrum, enabling compact and robust structured light projection. The metasurface encodes distinct phase gratings for orthogonal polarizations, producing fringe patterns with relative lateral displacements that vary according to the polarization of the transmitted light. We experimentally demonstrate high-quality fringe generation and apply the structured illumination in a fringe projection profilometry system for 3D surface measurement of different objects. The metasurface integrates multiple phase-shifting steps into a single static device, offering a millimeter-scale footprint and compatibility with polarization multiplexing. This approach introduces a compact, passive solution for structured light generation with broad potential in next-generation optical metrology and advanced computational imaging.
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id arxiv_https___arxiv_org_abs_2505_01051
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Phase-shifting structured illumination with polarization-encoded metasurface
Yu, Linzhi
Pietila, Jesse
Singh, Haobijam Johnson
Caglayan, Humeyra
Optics
Applied Physics
Phase-shifting structured illumination is a powerful technique used across diverse imaging modalities, including 3D surface measurement, quantitative phase imaging, and super-resolution microscopy. However, conventional implementations often rely on mechanically driven or optoelectronically complex systems, limiting their compactness, stability, and integration. Here, we present a polarization-controlled dielectric metasurface that generates phase-shifting fringe patterns in the visible spectrum, enabling compact and robust structured light projection. The metasurface encodes distinct phase gratings for orthogonal polarizations, producing fringe patterns with relative lateral displacements that vary according to the polarization of the transmitted light. We experimentally demonstrate high-quality fringe generation and apply the structured illumination in a fringe projection profilometry system for 3D surface measurement of different objects. The metasurface integrates multiple phase-shifting steps into a single static device, offering a millimeter-scale footprint and compatibility with polarization multiplexing. This approach introduces a compact, passive solution for structured light generation with broad potential in next-generation optical metrology and advanced computational imaging.
title Phase-shifting structured illumination with polarization-encoded metasurface
topic Optics
Applied Physics
url https://arxiv.org/abs/2505.01051