Polarized optical dark-field spectroscopy is shown to be a versatile noninvasive probe of plasmonic structures that trap light to the nanoscale. Clear spectral polarization splittings are found to be directly related to the asymmetric morphology of nanocavities formed between faceted gold nanoparticles and an underlying gold substrate. Both experiment and simulation show the influence of geometry on the coupled system, with spectral shifts Δλ = 3 nm from single atoms. Analytical models allow us to identify the split resonances as transverse cavity modes, tightly confined to the nanogap. The direct correlation of resonance splitting with atomistic morphology allows mapping of subnanometre structures, which is crucial for progress in extreme nan...
Plasmonic resonators are nanosized metallic antennas that convert electromagnetic waves at optical f...
Plasmonic dark modes are pure near-field modes that can arise from the plasmon hybridization in a se...
ABSTRACT: The spectroscopic characterization of individual nanostructures is of fundamental importan...
Polarized optical dark-field spectroscopy is shown to be a versatile noninvasive probe of plasmonic ...
Gold nanostructures exhibit high light absorption and scattering properties due to the localized sur...
2015-2016 > Academic research: refereed > Publication in refereed journalVersion of RecordPublishe
The core of this thesis explores the optical response and tuneability of plasmonic cavities. At its ...
The assemblies of metal nanoparticles, thanks to their intriguing plasmonic properties, have provide...
Abstract We present the experimental dark-field scattering studies and the simulation of plasmonic p...
Plasmonic cavities confine optical fields at metal-dielectric interfaces via collective charge oscil...
We demonstrate engineering of the spectral content and polarization of photoluminescence (PL) from a...
Controllable manipulation of light propagation on nanostructured plasmonic materials paves the way t...
Plasmonic antennas are able to concentrate and re-emit light in a controllable manner through strong...
ABSTRACT Plasmon arises from the oscillation of electrons in conduction band with the existe...
The spectroscopic characterization of individual nanostructures is of fundamental importance to unde...
Plasmonic resonators are nanosized metallic antennas that convert electromagnetic waves at optical f...
Plasmonic dark modes are pure near-field modes that can arise from the plasmon hybridization in a se...
ABSTRACT: The spectroscopic characterization of individual nanostructures is of fundamental importan...
Polarized optical dark-field spectroscopy is shown to be a versatile noninvasive probe of plasmonic ...
Gold nanostructures exhibit high light absorption and scattering properties due to the localized sur...
2015-2016 > Academic research: refereed > Publication in refereed journalVersion of RecordPublishe
The core of this thesis explores the optical response and tuneability of plasmonic cavities. At its ...
The assemblies of metal nanoparticles, thanks to their intriguing plasmonic properties, have provide...
Abstract We present the experimental dark-field scattering studies and the simulation of plasmonic p...
Plasmonic cavities confine optical fields at metal-dielectric interfaces via collective charge oscil...
We demonstrate engineering of the spectral content and polarization of photoluminescence (PL) from a...
Controllable manipulation of light propagation on nanostructured plasmonic materials paves the way t...
Plasmonic antennas are able to concentrate and re-emit light in a controllable manner through strong...
ABSTRACT Plasmon arises from the oscillation of electrons in conduction band with the existe...
The spectroscopic characterization of individual nanostructures is of fundamental importance to unde...
Plasmonic resonators are nanosized metallic antennas that convert electromagnetic waves at optical f...
Plasmonic dark modes are pure near-field modes that can arise from the plasmon hybridization in a se...
ABSTRACT: The spectroscopic characterization of individual nanostructures is of fundamental importan...