Confining and controlling light in extreme subwavelength scales are tantalizing tasks. In this work, we report a study of individual plasmonic film-coupled nanostar resonators where polarized plasmonic optical modes are trapped in ultrasmall volumes. Individual gold nanostars, separated from a flat gold film by a thin dielectric spacer layer, exhibit a strong light confinement between the sub-10 nm volume of the nanostar\u27s tips and the film. Through dark field scattering measurements of many individual nanostars, a statistical observation of the scattered spectra is obtained and compared with extensive simulation data to reveal the origins of the resonant peaks. We observe that an individual nanostar on a flat gold film can result in a r...
The optical transmission and electric field distribution of plasmonic nanostructures dictate their p...
Plasmons are collective oscillations of free electrons in a metal. At optical frequencies plasmons e...
The current thrust towards developing silicon compatible integrated nanophotonic devices is driven b...
Confining and controlling light in extreme subwavelength scales are tantalizing tasks. In this work,...
Confining and controlling light in extreme subwavelength scales are tantalizing tasks. In this work,...
Confining and controlling light in extreme subwavelength scales are tantalizing tasks. In this work,...
Confining and controlling light in extreme subwavelength scales are tantalizing tasks. In this work,...
Herein we present a new modeling approach to nanostar plasmonics that treats nanostar spikes as dual...
A new self-aligned robust method for coupling to whispering gallery modes (WGMs) of submicron micros...
Surface plasmon resonances of metal nanostructures have been studied intensely in recent years. The ...
Surface plasmon resonances of metal nanostructures have been studied intensely in recent years. The ...
Various properties of Surface Plasmon Polaritons (SPPs) at the interface between a layer of PMMA (po...
International audienceMetal-insulator-metal systems exhibit a rich underlying physics leading to a h...
International audienceMetal-insulator-metal systems exhibit a rich underlying physics leading to a h...
The conversion of optical power to an electrical potential is of general interest for energy applica...
The optical transmission and electric field distribution of plasmonic nanostructures dictate their p...
Plasmons are collective oscillations of free electrons in a metal. At optical frequencies plasmons e...
The current thrust towards developing silicon compatible integrated nanophotonic devices is driven b...
Confining and controlling light in extreme subwavelength scales are tantalizing tasks. In this work,...
Confining and controlling light in extreme subwavelength scales are tantalizing tasks. In this work,...
Confining and controlling light in extreme subwavelength scales are tantalizing tasks. In this work,...
Confining and controlling light in extreme subwavelength scales are tantalizing tasks. In this work,...
Herein we present a new modeling approach to nanostar plasmonics that treats nanostar spikes as dual...
A new self-aligned robust method for coupling to whispering gallery modes (WGMs) of submicron micros...
Surface plasmon resonances of metal nanostructures have been studied intensely in recent years. The ...
Surface plasmon resonances of metal nanostructures have been studied intensely in recent years. The ...
Various properties of Surface Plasmon Polaritons (SPPs) at the interface between a layer of PMMA (po...
International audienceMetal-insulator-metal systems exhibit a rich underlying physics leading to a h...
International audienceMetal-insulator-metal systems exhibit a rich underlying physics leading to a h...
The conversion of optical power to an electrical potential is of general interest for energy applica...
The optical transmission and electric field distribution of plasmonic nanostructures dictate their p...
Plasmons are collective oscillations of free electrons in a metal. At optical frequencies plasmons e...
The current thrust towards developing silicon compatible integrated nanophotonic devices is driven b...