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Updated: Mar 3, 2026

Photorealistic Learned Landscapes for Augmented Reality
Published on: June 27, 2025
拡張現実のための二次元トポロジー最適化非局所メタサーフェス
Chih-Yao Hsu1, Huan-Teng Su1, Wan-Tzu Kuo1
1Department of Photonics, College of Electrical and Computer Engineering, National Yang Ming Chiao Tung University, Hsinchu 300093, Taiwan.
Abstract:
Metasurfaces have been widely explored in augmented reality (AR) platforms to replace bulky optical components. However, metasurface-based free-space combiners lack spectral multifunctionality capability, limiting the separation between ambient light and display light. While nonlocal metasurfaces offer a potential solution, existing designs typically rely on vertical stacking or spatial multiplexing yet often suffer from reduced efficiency. Here, we demonstrate a topology-optimized nonlocal metasurface that achieves high-Q resonances at RGB wavelengths via first-order reflective diffraction, enabling compact, multifunctional free-space combiners for AR. By introducing two-dimensional design freedom into resonant waveguide gratings, we realize freeform structures with high diffraction efficiencies, narrow spectral bandwidths, and precise wavelength selectivity. Experimental results validate close agreement with simulations, showing vivid color reproduction and a strong suppression of spectral leakage. Integrated into a free-space AR platform, our metasurface achieves high color purity with reduced display power, offering a promising path toward advanced optical displays and spectrally selective photonic systems.
関連する概念動画
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