We experimentally demonstrate that gain materials properly encapsulated into the shell surrounding metal nanoparticles (NPs) are responsible for the modification of the overall plasmon response of engineered nanostructures. A comparison between designed systems based on functionalized core-shell NPs having different encapsulated dye molecules is presented. Experimental observations of Rayleigh scattering enhancement, accompanied by an increase of transmission as a function of gain, reveal striking optical loss compensation effects. Fluorescence lifetime measurements demonstrate a quenching of dye photoluminescence in functionalized core-shell NP samples with respect to pure dye solutions, confirming the strong resonant coupling occurring be...
The compensation of loss in metal by gain in interfacing dielectric has been demonstrated in a mixtu...
Within the frame of a simple, long-wavelength, quasi-static description, we present a theoretical ch...
We demonstrate that fluorophores coupled to plasmonic nanoparticles promote resonant excitation ener...
Scuola di Scienza e Tecnica "Bernardino Telesio", Dottorato di Ricerca in Scienza e Tecnologia delle...
Plasmonics exhibits the potential to break the diffraction limit and bridge the gap between electron...
Plasmonics exhibits the potential to break the diffraction limit and bridge the gap between electron...
We investigate the fluorescence properties of dye molecules embedded in core-shell plasmonic nanopar...
We investigate the fluorescence properties of dye molecules embedded in core-shell plasmonic nanopar...
We investigate the fluorescence properties of dye molecules embedded in core-shell plasmonic nanopar...
Cataloged from PDF version of article.Plasmonics exhibits the potential to break the diffraction lim...
International audienceSpasers are based on a combination of the localized plasmon field properties o...
We report on the possibility of adopting active gain materials (specifically, made of fluorescent d...
We report on the possibility of adopting active gain materials (specifically, made of fluorescent d...
textThe problem of heavy material and radiative losses in plasmonic devices has held back their impl...
We report on the possibility of adopting active gain materials (specifically, made of fluorescent d...
The compensation of loss in metal by gain in interfacing dielectric has been demonstrated in a mixtu...
Within the frame of a simple, long-wavelength, quasi-static description, we present a theoretical ch...
We demonstrate that fluorophores coupled to plasmonic nanoparticles promote resonant excitation ener...
Scuola di Scienza e Tecnica "Bernardino Telesio", Dottorato di Ricerca in Scienza e Tecnologia delle...
Plasmonics exhibits the potential to break the diffraction limit and bridge the gap between electron...
Plasmonics exhibits the potential to break the diffraction limit and bridge the gap between electron...
We investigate the fluorescence properties of dye molecules embedded in core-shell plasmonic nanopar...
We investigate the fluorescence properties of dye molecules embedded in core-shell plasmonic nanopar...
We investigate the fluorescence properties of dye molecules embedded in core-shell plasmonic nanopar...
Cataloged from PDF version of article.Plasmonics exhibits the potential to break the diffraction lim...
International audienceSpasers are based on a combination of the localized plasmon field properties o...
We report on the possibility of adopting active gain materials (specifically, made of fluorescent d...
We report on the possibility of adopting active gain materials (specifically, made of fluorescent d...
textThe problem of heavy material and radiative losses in plasmonic devices has held back their impl...
We report on the possibility of adopting active gain materials (specifically, made of fluorescent d...
The compensation of loss in metal by gain in interfacing dielectric has been demonstrated in a mixtu...
Within the frame of a simple, long-wavelength, quasi-static description, we present a theoretical ch...
We demonstrate that fluorophores coupled to plasmonic nanoparticles promote resonant excitation ener...