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◆ Nano Letters2026-01-08· Holography

Reconfigurable Visible Holography at a Single Design Wavelength Enabled by an Sb <sub>2</sub> S <sub>3</sub> Phase-Change Metasurface

Nan Yang, Shuhao Si, Dexi Kong, Qing-Yang Yue, Liangcai Wu, Cai Y, Yun Meng

原始摘要(英文原文)· Original abstract
Reconfigurable metasurface holography in the visible region is hindered by the trade-off between optical loss and phase tunability. We report a reconfigurable visible metasurface hologram operated at a fixed wavelength, enabled by the reversible phase transition of an Sb 2 S 3 phase-change metasurface. The device integrates nonvolatile switching with complementary polarization multiplexing and a computationally optimized phase framework to achieve on-demand control of multiple holographic channels without altering geometry. In the crystalline state, two distinct images are reconstructed under orthogonal linear polarizations ( x and y ), whereas in the amorphous state, two additional images are activated under left- and right-handed circular polarizations (LCP and RCP). An iterative Fourier–Adam optimization establishes a shared base phase that maintains interchannel orthogonality, suppressing crosstalk and enhancing reconstruction fidelity. The low-loss, nonvolatile Sb 2 S 3 platform provides a scalable route toward compact optical encryption and programmable visible photonics.
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Reconfigurable Visible Holography at a Single Design Wavelength Enabled by an Sb <sub>2</sub> S <sub>3</sub> Phase-Change Metasurface — 科研速览 Science Skim