Metal-film-coupled nanoparticles with subnanometer particle–film gaps possess an ultrasmall mode volume, responsible for a variety of intriguing phenomena in plasmonic nanophotonics. Due to the large radiative loss associated with dipolar coupling, however, the plasmonic-film-coupled nanocavities usually feature a low-quality factor, setting an ultimate limit of the increased light–matter interaction strength. Here, we demonstrate a plasmonic nanocavity composed of a metal-film-coupled nanoparticle dimer, exhibiting a significantly improved quality factor. Compared to a silica-supported dimer, the spectral line width of the nanocavity plasmon resonance is reduced by a factor of ∼4.6 and is even smaller than its monomer counterpart (∼30% red...
We study theoretically the optical response of a nanohybrid comprising a symmetric quantum dimer emi...
Resumen del trabajo presentado a la Conferencia Plasmonica, celebrada en Lecce (Italia) del 5 al 7 d...
We study theoretically the optical response of a nanohybrid comprising a symmetric quantum dimer emi...
Metal-film-coupled nanoparticles with subnanometer particle–film gaps possess an ultrasmall mode vol...
Metal-film-coupled nanoparticles with subnanometer particle–film gaps possess an ultrasmall mode vol...
Plasmonic particle-on-film nanocavities, supporting gap modes with ultra-small volume, provide a gre...
Plasmonic particle-on-film nanocavities, supporting gap modes with ultra-small volume, provide a gre...
Plasmonic antennas are able to concentrate and re-emit light in a controllable manner through strong...
2015-2016 > Academic research: refereed > Publication in refereed journalVersion of RecordPublishe
Metallic nanostructures with nanometer gaps support hybrid plasmonic modes with an extremely small m...
The plasmon resonances of two closely spaced metallic particles have enabled applications including ...
Combining localized surface plasmons (LSPs) and diffractive surface waves (DSWs) in metallic nanopar...
Plasmon–exciton interactions are important for many prominent spectroscopic applications such as sur...
The core of this thesis explores the optical response and tuneability of plasmonic cavities. At its ...
We study theoretically the optical response of a nanohybrid comprising a symmetric quantum dimer emi...
We study theoretically the optical response of a nanohybrid comprising a symmetric quantum dimer emi...
Resumen del trabajo presentado a la Conferencia Plasmonica, celebrada en Lecce (Italia) del 5 al 7 d...
We study theoretically the optical response of a nanohybrid comprising a symmetric quantum dimer emi...
Metal-film-coupled nanoparticles with subnanometer particle–film gaps possess an ultrasmall mode vol...
Metal-film-coupled nanoparticles with subnanometer particle–film gaps possess an ultrasmall mode vol...
Plasmonic particle-on-film nanocavities, supporting gap modes with ultra-small volume, provide a gre...
Plasmonic particle-on-film nanocavities, supporting gap modes with ultra-small volume, provide a gre...
Plasmonic antennas are able to concentrate and re-emit light in a controllable manner through strong...
2015-2016 > Academic research: refereed > Publication in refereed journalVersion of RecordPublishe
Metallic nanostructures with nanometer gaps support hybrid plasmonic modes with an extremely small m...
The plasmon resonances of two closely spaced metallic particles have enabled applications including ...
Combining localized surface plasmons (LSPs) and diffractive surface waves (DSWs) in metallic nanopar...
Plasmon–exciton interactions are important for many prominent spectroscopic applications such as sur...
The core of this thesis explores the optical response and tuneability of plasmonic cavities. At its ...
We study theoretically the optical response of a nanohybrid comprising a symmetric quantum dimer emi...
We study theoretically the optical response of a nanohybrid comprising a symmetric quantum dimer emi...
Resumen del trabajo presentado a la Conferencia Plasmonica, celebrada en Lecce (Italia) del 5 al 7 d...
We study theoretically the optical response of a nanohybrid comprising a symmetric quantum dimer emi...