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Published on: April 1, 2013
Optimized Plasmonic Gold-Pillar Metasurfaces for Refractive-Index Sensing
Liliana Valente1, Dante M Aceti1, Rossella Zaffino2
1NLHT-Lab, Department of Physics, University of Calabria and CNR-NANOTEC, Institute of Nanotechnology, 87036 Rende, Italy.
Abstract:
Gold pillar-based plasmonic metasurfaces provide a robust platform for optical sensing owing to their strong localized surface plasmon resonances and tunable near-field distributions. In this work, we present a numerical investigation of a gold-pillar metasurface optimized specifically for high-performance refractive-index sensing. A comprehensive parametric optimization of the metasurface was carried out, including analyses of the inter-pillar gap, the thickness of the underlying gold film, and the optical response under varying angles of incidence. Numerical analysis demonstrates that the engineered plasmonic pillar array achieves a sensitivity of 500 nm/RIU and a Figure of Merit (FOM) of 79. These results demonstrate the potential of the proposed plasmonic metasurface as an optimized platform for high-performance refractive-index sensing, providing practical design guidelines for future chemical and biological sensing applications.

