All-Dielectric Metasurface with a Two-Dimensional Locally Flat Photonic Band
All-Dielectric Metasurface with a Two-Dimensional Locally Flat Photonic Band
Photonic flatbands offer promising light-matter interaction due to their unique slow-light nature. In recent years, flatbands have also attracted significant interest in optical engineering because of their angle-insensitive resonant characteristics. However, most photonic flatbands demonstrated to date occur only in one dimension and for a specific polarization, limiting their applicability. To date, no studies have reported the dispersionless behavior of flatbands under arbitrary two-dimensional incident angles. Here, we present a two-dimensional photonic flatband created using a silicon metasurface with a Lieb lattice structure which demonstrates a locally flat photonic band for both TE- and TM- polarized light. Employing Fourier imaging, we analyze its energy-momentum dispersion under arbitrary two-dimensional incident angles, demonstrating dispersionless flatbands up to +/-60° or +/-10°, depending on the polarization state and incident angle. This geometry is adaptable for applications in local field enhancement, enhanced photodetection, and augmented reality.
Minho Choi、Christopher Munley、Arnab Manna、Johannes Fröch、Arthur Barnard、Arka Majumdar
光电子技术
Minho Choi,Christopher Munley,Arnab Manna,Johannes Fröch,Arthur Barnard,Arka Majumdar.All-Dielectric Metasurface with a Two-Dimensional Locally Flat Photonic Band[EB/OL].(2025-06-25)[2025-07-17].https://arxiv.org/abs/2506.20871.点此复制
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