Mathematical and numerical framework for metasurfaces using thin layers of periodically distributed plasmonic nanoparticles

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Abstract

In this paper, we derive an impedance boundary condition to approximate the optical scattering effect of an array of plasmonic nanoparticles mounted on a perfectly conducting plate. We show that at some resonant frequencies the impedance blows up, allowing for a significant reduction of the scattering from the plate. Using the spectral properties of a Neumann-Poincaré type operator, we investigate the dependency of the impedance with respect to changes in the nanoparticle geometry and configuration.

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Ammari, H., Ruiz, M., Wu, W., Yu, S., & Zhang, H. (2016). Mathematical and numerical framework for metasurfaces using thin layers of periodically distributed plasmonic nanoparticles. Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences, 472(2193). https://doi.org/10.1098/rspa.2016.0445

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