We investigate the fluorescence rate of a dipolar emitter coupled to Al nanoparticles of varying shapes and sizes and to dimer nanoantennas in the deep-ultraviolet (UV) spectral range, using the surface integral equation method. In particular, we show that the shape of the Al nanostructures plays a fundamental role in controlling the complex interplay between the excitation rate and the quantum yield in radiative plasmonic systems. In addition, we also investigate the role of the near-field interaction of two coupled Al nanoparticles in enhancing the fluorescence rate of the dipole. This study is important for the engineering of more efficient light-emitting nanostructures in the UV spectral range, such as Al-based material systems or light-emitting fluorophores for biodetection.

Enhancement of Molecular Fluorescence in the UV Spectral Range Using Aluminum Nanoantennas / Forestiere, Carlo; Alex, Handin; Luca Dal, Negro. - In: PLASMONICS. - ISSN 1557-1955. - 9:3(2014), pp. 715-725. [10.1007/s11468-014-9691-6]

Enhancement of Molecular Fluorescence in the UV Spectral Range Using Aluminum Nanoantennas

FORESTIERE, CARLO;
2014

Abstract

We investigate the fluorescence rate of a dipolar emitter coupled to Al nanoparticles of varying shapes and sizes and to dimer nanoantennas in the deep-ultraviolet (UV) spectral range, using the surface integral equation method. In particular, we show that the shape of the Al nanostructures plays a fundamental role in controlling the complex interplay between the excitation rate and the quantum yield in radiative plasmonic systems. In addition, we also investigate the role of the near-field interaction of two coupled Al nanoparticles in enhancing the fluorescence rate of the dipole. This study is important for the engineering of more efficient light-emitting nanostructures in the UV spectral range, such as Al-based material systems or light-emitting fluorophores for biodetection.
2014
Enhancement of Molecular Fluorescence in the UV Spectral Range Using Aluminum Nanoantennas / Forestiere, Carlo; Alex, Handin; Luca Dal, Negro. - In: PLASMONICS. - ISSN 1557-1955. - 9:3(2014), pp. 715-725. [10.1007/s11468-014-9691-6]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/588136
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