Zone-Folded Quasi-bound State Metasurfaces with Customized, Symmetry-Protected Energy-Momentum Relations
物理
光子学
动量(技术分析)
角动量
单一制国家
窄带
光学
量子力学
财务
政治学
法学
经济
作者
Adam C. Overvig,Michele Cotrufo,Matthew Markowitz,You Zhou,Bing Hao,Karl Stensvad,Craig Schardt,Andrea Alù
出处
期刊:ACS Photonics [American Chemical Society] 日期:2023-05-09卷期号:10 (6): 1832-1840被引量:5
标识
DOI:10.1021/acsphotonics.3c00179
摘要
Energy-momentum (dispersion) relations are a foundational framework for photonic device design, but our incomplete command thereof still limits key technologies. For instance, narrowband optical combiners for augmented reality should ideally reflect with unitary efficiency selected wavelengths that encode the artificial information over a large range of oblique incident angles, yet they are conventionally severely limited in field of view by dispersion. Here, we engineer nonlocal metasurfaces to support quasi-bound states in continuum with zero first-order resonant frequency dispersion at any desired quasi-momentum by exploiting a zone-folding technique that leverages a change in the lattice family. Our platform thereby advances photonic devices by enabling unprecedented control over the energy-momentum properties of nonlocal states, rationally controlled through a perturbation scheme that produces minimal distortion to non-resonant light.