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  1. Outputs

3D vertical nanostructures for enhanced infrared plasmonics

Academic Article
Publication Date:
2015
abstract:
The exploitation of surface plasmon polaritons has been mostly limited to the visible and near infrared range, due to the low frequency limit for coherent plasmon excitation and the reduction of confinement on the metal surface for lower energies. In this work we show that 3D - out of plane - nanostructures can considerably increase the intrinsic quality of the optical output, light confinement and electric field enhancement factors, also in the near and mid-infrared. We suggest that the physical principle relies on the combination of far field and near field interactions between neighboring antennas, promoted by the 3D out-of-plane geometry. We first analyze the changes in the optical behavior, which occur when passing from a single on-plane nanostructure to a 3D outof- plane configuration. Then we show that by arranging the nanostructures in periodic arrays, 3D architectures can provide, in the mid-IR, a much stronger plasmonic response, compared to that achievable with the use of 2D configurations, leading to higher energy harvesting properties and improved Q-factors, with bright perspective up to the terahertz range.
Iris type:
1.1 Articolo in rivista
Keywords:
Multidisciplinary
List of contributors:
Malerba, Mario; Alabastri, Alessandro; Miele, Ermanno; Zilio, Pierfrancesco; Patrini, Maddalena; Bajoni, Daniele; Messina, Gabriele C.; Dipalo, Michele; Toma, Andrea; Zaccaria, Remo Proietti; De Angelis, Francesco
Authors of the University:
BAJONI DANIELE
PATRINI MADDALENA
Handle:
https://iris.unipv.it/handle/11571/1109327
Published in:
SCIENTIFIC REPORTS
Journal
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URL

www.nature.com/srep/index.html
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