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arxiv: 1410.7802 · v1 · pith:LSDPBSHTnew · submitted 2014-10-28 · ❄️ cond-mat.mes-hall · physics.optics

Visible-frequency metasurfaces for broadband anomalous reflection and high-efficiency spectrum splitting

classification ❄️ cond-mat.mes-hall physics.optics
keywords metasurfacesanomalousspectrumsplittingbroadbandreflectionbeendesign
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Ultrathin metasurfaces have recently emerged as promising materials to enable novel, flat optical components and surface-confined, miniature photonic devices. However, experimental realization of high-performance metasurfaces at visible frequencies has been a significant challenge due to high plasmonic losses and difficulties in high-uniformity nanofabrication. Here, we propose a highly-efficient yet simple metasurface design comprising of single gradient antenna as unit cell. We demonstrate visible broadband (450 - 850 nm) anomalous reflection and spectrum splitting with 85% conversion efficiency. Average power ratio of anomalous reflection to the strongest diffraction was calculated to be ~ 103 and measured to be ~ 10. The anomalous reflected photons and spectrum splitting performance have been visualized using CCD and characterized using angle-resolved measurement setup. Metasurface design proposed here is a clear departure from conventional metasurfaces utilizing multiple, anisotropic resonators, and could enable high-efficiency, broadband metasurfaces for achieving directional emitters, polarization/spectrum splitting surfaces for spectroscopy and photovoltaics.

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