| Literature DB >> 29041170 |
Liyi Hsu, Matthieu Dupré, Abdoulaye Ndao, Julius Yellowhair, Boubacar Kanté.
Abstract
Metasurfaces have attracted significant attention due to their novel designs for flat optics. However, the approach usually used to engineer metasurface devices assumes that neighboring elements are identical, by extracting the phase information from simulations with periodic boundaries, or that near-field coupling between particles is negligible, by extracting the phase from single particle simulations. This is not the case most of the time and the approach thus prevents the optimization of devices that operate away from their optimum. Here, we propose a versatile numerical method to obtain the phase of each element within the metasurface (meta-atoms) while accounting for near-field coupling. Quantifying the phase error of each element of the metasurfaces with the proposed local phase method paves the way to the design of highly efficient metasurface devices including, but not limited to, deflectors, high numerical aperture metasurface concentrators, lenses, cloaks, and modulators.Entities:
Year: 2017 PMID: 29041170 DOI: 10.1364/OE.25.024974
Source DB: PubMed Journal: Opt Express ISSN: 1094-4087 Impact factor: 3.894