The mechanism by which light is emitted from plasmonic metals such as gold and silver has been contentious, particularly at photon energies below direct interband transitions. Using nanoscale plasmonic cavities, blue-pumped light emission is found to directly track dark-field scattering on individual nanoconstructs. By exploiting slow atomic-scale restructuring of the nanocavity facets to spectrally tune the dominant gap plasmons, this correlation can be measured from 600 to 900 nm in gold, silver, and mixed constructs ranging from spherical to cube nanoparticles-on-mirror. We show that prompt electronic Raman scattering is responsible and confirm that "photoluminescence", which implies phase and energy relaxation, is not the right descript...
Metal nanostructures have received considerable attention for their ability to guide and manipulate ...
tion of noble metal systems that can manipulate light at the nanoscaleOhas attracted significant att...
By combining experiment and theory, we believe our study shed light on developing a new method for w...
The mechanism by which light is emitted from plasmonic metals such as gold and silver has been conte...
Plasmonic nanojunctions, consisting of adjacent metal structures with nanometre gaps, can support lo...
The applications of plasmonic nanostructures provide a promising way to achieve enhanced light-matte...
ABSTRACT Plasmon arises from the oscillation of electrons in conduction band with the existe...
In this work, we performed a systematic study on the photoluminescence and scattering spectra of ind...
In this work, we performed a systematic study on the photoluminescence and scattering spectra of ind...
Temperature-dependent surface-enhanced Raman scattering (SERS) is used to investigate the photolumin...
Plasmonic resonators are nanosized metallic antennas that convert electromagnetic waves at optical f...
Photoluminescence (PL) from bulk noble metals arises from the interband transition of bound electron...
Bulk gold shows photoluminescence (PL) with a negligible quantum yield of ∼10<sup>–10</sup>, which c...
The mechanism for the photoluminescence (PL) emission from gold nanoparticles has attracted consider...
Plasmons are collective oscillations of free electrons in a metal. At optical frequencies plasmons e...
Metal nanostructures have received considerable attention for their ability to guide and manipulate ...
tion of noble metal systems that can manipulate light at the nanoscaleOhas attracted significant att...
By combining experiment and theory, we believe our study shed light on developing a new method for w...
The mechanism by which light is emitted from plasmonic metals such as gold and silver has been conte...
Plasmonic nanojunctions, consisting of adjacent metal structures with nanometre gaps, can support lo...
The applications of plasmonic nanostructures provide a promising way to achieve enhanced light-matte...
ABSTRACT Plasmon arises from the oscillation of electrons in conduction band with the existe...
In this work, we performed a systematic study on the photoluminescence and scattering spectra of ind...
In this work, we performed a systematic study on the photoluminescence and scattering spectra of ind...
Temperature-dependent surface-enhanced Raman scattering (SERS) is used to investigate the photolumin...
Plasmonic resonators are nanosized metallic antennas that convert electromagnetic waves at optical f...
Photoluminescence (PL) from bulk noble metals arises from the interband transition of bound electron...
Bulk gold shows photoluminescence (PL) with a negligible quantum yield of ∼10<sup>–10</sup>, which c...
The mechanism for the photoluminescence (PL) emission from gold nanoparticles has attracted consider...
Plasmons are collective oscillations of free electrons in a metal. At optical frequencies plasmons e...
Metal nanostructures have received considerable attention for their ability to guide and manipulate ...
tion of noble metal systems that can manipulate light at the nanoscaleOhas attracted significant att...
By combining experiment and theory, we believe our study shed light on developing a new method for w...