We report theoretical and experimental investigations of the optical response of two-dimensional periodic arrays of rectangular gold nanopatches grown on a monolayer graphene placed on a glass substrate. We discuss the numerical analysis and optical characterization by means of reflection spectra and show that rectangular nanopatches display a polarization-dependent response, at normal incidence, which leads to double plasmonic resonances due to the Wood anomaly. We detail the fabrication process highlighting how the resist primer and the adhesion layer can reduce and impede the graphene doping due to the environment and to the nanopatches, respectively, by means of Raman spectroscopy.
Fabrication of doubly-resonant plasmonic nanopatch arrays on graphene / Grande, Marco; T., Stomeo; G. V., Bianco; M. A., Vincenti; D., de Ceglia; Petruzzelli, Vincenzo; G., Bruno; M., De Vittorio; M., Scalora; D'Orazio, Antonella. - In: APPLIED PHYSICS LETTERS. - ISSN 0003-6951. - STAMPA. - 102:23(2013). [10.1063/1.4810785]
Fabrication of doubly-resonant plasmonic nanopatch arrays on graphene
GRANDE, Marco;PETRUZZELLI, Vincenzo;D'ORAZIO, Antonella
2013-01-01
Abstract
We report theoretical and experimental investigations of the optical response of two-dimensional periodic arrays of rectangular gold nanopatches grown on a monolayer graphene placed on a glass substrate. We discuss the numerical analysis and optical characterization by means of reflection spectra and show that rectangular nanopatches display a polarization-dependent response, at normal incidence, which leads to double plasmonic resonances due to the Wood anomaly. We detail the fabrication process highlighting how the resist primer and the adhesion layer can reduce and impede the graphene doping due to the environment and to the nanopatches, respectively, by means of Raman spectroscopy.File | Dimensione | Formato | |
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