Plasmonics exhibits the potential to break the diffraction limit and bridge the gap between electronics and photonics by routing and manipulating light at the nanoscale. However, the inherent and strong energy dissipation present in metals, especially in the near-infrared and visible wavelength ranges, significantly hampers the applications in nanophotonics. Therefore, it is a major challenge to mitigate the losses. One way to compensate the losses is to incorporate gain media into plasmonics. Here, we experimentally show that the incorporation of gain material into a local surface plasmonic system (Au/silica/silica dye core-multishell nanoparticles) leads to a resonant energy transfer from the gain media to the plasmon. The optimized condi...
Plasmonic core-shell particles, consisting of a spherical dielectric core coated with a concentric l...
Plasmonic core-shell particles, consisting of a spherical dielectric core coated with a concentric l...
We report on the possibility of adopting active gain materials (specifically, made of fluorescent d...
Plasmonics exhibits the potential to break the diffraction limit and bridge the gap between electron...
Cataloged from PDF version of article.Plasmonics exhibits the potential to break the diffraction lim...
© The Royal Society of Chemistry 2015. The strong inherent optical losses present in plasmonic nanos...
We report on the broadband resonant energy transfer processes observed in dye doped gold nanoshells,...
We experimentally demonstrate that gain materials properly encapsulated into the shell surrounding m...
The localized plasmons of metal nanocrystals have been widely utilized to control a variety of optic...
Owing to the competition between the radiative and nonradiative decay channels occurring in plasmoni...
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...
Inherent optical losses of plasmonic materials represent a crucial issue for optoplasmonics, whereas...
International audienceSpasers are based on a combination of the localized plasmon field properties o...
Nanoscale architectures have been designed by entrapping rhodamine 6G dye molecules into the channel...
Plasmonic core-shell particles, consisting of a spherical dielectric core coated with a concentric l...
Plasmonic core-shell particles, consisting of a spherical dielectric core coated with a concentric l...
We report on the possibility of adopting active gain materials (specifically, made of fluorescent d...
Plasmonics exhibits the potential to break the diffraction limit and bridge the gap between electron...
Cataloged from PDF version of article.Plasmonics exhibits the potential to break the diffraction lim...
© The Royal Society of Chemistry 2015. The strong inherent optical losses present in plasmonic nanos...
We report on the broadband resonant energy transfer processes observed in dye doped gold nanoshells,...
We experimentally demonstrate that gain materials properly encapsulated into the shell surrounding m...
The localized plasmons of metal nanocrystals have been widely utilized to control a variety of optic...
Owing to the competition between the radiative and nonradiative decay channels occurring in plasmoni...
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...
Inherent optical losses of plasmonic materials represent a crucial issue for optoplasmonics, whereas...
International audienceSpasers are based on a combination of the localized plasmon field properties o...
Nanoscale architectures have been designed by entrapping rhodamine 6G dye molecules into the channel...
Plasmonic core-shell particles, consisting of a spherical dielectric core coated with a concentric l...
Plasmonic core-shell particles, consisting of a spherical dielectric core coated with a concentric l...
We report on the possibility of adopting active gain materials (specifically, made of fluorescent d...