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1.
Opt Express ; 23(22): 28206-15, 2015 Nov 02.
Artículo en Inglés | MEDLINE | ID: mdl-26561091

RESUMEN

Metallic nanoparticle arrays support localized surface plasmon resonances (LSPRs) and propagating surface lattice resonances (SLRs). We study the control of quantum dot (QD) emission coupled to the optical modes of silver nanoparticle arrays, both experimentally and numerically. With a hybrid lithography-functionalization method, the QDs are deposited in the vicinity of the nanoparticles. Directionality and enhancement of the emission are observed in photoluminescence spectra and fluorescence lifetime measurements, respectively. Similar features are also demonstrated in the numerical simulations. The tunable emission of this type of hybrid structures could lead to potential applications in light sources.

2.
Nanotechnology ; 24(49): 495704, 2013 Dec 13.
Artículo en Inglés | MEDLINE | ID: mdl-24231223

RESUMEN

We theoretically and numerically investigate metal enhanced fluorescence of plasmonic core-shell nanoparticles doped with rare earth (RE) ions. Particle shape and size are engineered to maximize the average enhancement factor (AEF) of the overall doped shell. We show that the highest enhancement (11 in the visible and 7 in the near-infrared) is achieved by tuning either the dipolar or the quadrupolar particle resonance to the rare earth ion's excitation wavelength. Additionally, the calculated AEFs are compared to experimental data reported in the literature, obtained in similar conditions (plasmon mediated enhancement) or when a metal-RE energy transfer mechanism is involved.


Asunto(s)
Nanopartículas del Metal/química , Metales/química , Espectrometría de Fluorescencia , Transferencia de Energía , Fluorescencia , Iones , Luminiscencia , Ensayo de Materiales , Metales de Tierras Raras , Nanopartículas , Nanotubos/química , Resonancia por Plasmón de Superficie , Propiedades de Superficie
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