The strong coupling between planar arrays of gold and silver nanoparticles mediated by a near-field interaction is investigated both theoretically and experimentally to provide an in-depth study of symmetry breaking in complex nanoparticle structures. The asymmetric composition allows to probe for bright and dark eigenmodes, in accordance with plasmon hybridization theory. The strong coupling could only be observed by separating the layers by a nanometric distance with monolayers of suitably chosen polymers. The bottom-up assembly of the nanoparticles as well as the stratified structures themselves gives rise to an extremely flexible system that, moreover, allows the facile variation of a number of important material parameters as well as t...
The electromagnetic (EM) coupling between metal nanoparticles (NPs) is of essential importance in na...
We report the properties of plasmons in dense planar arrays of silver single and double nanostructur...
Localized surface plasmon resonance (LSPR) arises when light interacts with metallic nanoparticles (...
The strong coupling between planar arrays of gold and silver nanoparticles mediated by a near-field ...
Metallic nanostructures support resonant oscillations of their conduction band electrons called loca...
Metallic nanoparticles can generate collective oscillation of conduction electrons when excited by i...
Single particle microscopy and spectroscopy strategies reveal hidden relationships between the surfa...
Noble metallic nanoparticles which supports localized surface plasmon resonances, offers a variety o...
This dissertation provides a comprehensive study of non-Hermitian systems and applications. The coup...
Controlling the hybridization is a very powerful tool to manipulate the modes in a single nanostruct...
Molecular plasmonics involves the study and applications of plasmonic metal nanostructures interacti...
Metal nanostructures have received considerable attention for their ability to guide and manipulate ...
Plasmonic nanoparticle pairs known as “dimers ” embody a simple system for generating intense nanosc...
Plasmonics is the branch of photonics that is concerned with the interactions which take place betwe...
A metallic nanocross geometry sustaining broad dipole and sharp higher order localized surface plasm...
The electromagnetic (EM) coupling between metal nanoparticles (NPs) is of essential importance in na...
We report the properties of plasmons in dense planar arrays of silver single and double nanostructur...
Localized surface plasmon resonance (LSPR) arises when light interacts with metallic nanoparticles (...
The strong coupling between planar arrays of gold and silver nanoparticles mediated by a near-field ...
Metallic nanostructures support resonant oscillations of their conduction band electrons called loca...
Metallic nanoparticles can generate collective oscillation of conduction electrons when excited by i...
Single particle microscopy and spectroscopy strategies reveal hidden relationships between the surfa...
Noble metallic nanoparticles which supports localized surface plasmon resonances, offers a variety o...
This dissertation provides a comprehensive study of non-Hermitian systems and applications. The coup...
Controlling the hybridization is a very powerful tool to manipulate the modes in a single nanostruct...
Molecular plasmonics involves the study and applications of plasmonic metal nanostructures interacti...
Metal nanostructures have received considerable attention for their ability to guide and manipulate ...
Plasmonic nanoparticle pairs known as “dimers ” embody a simple system for generating intense nanosc...
Plasmonics is the branch of photonics that is concerned with the interactions which take place betwe...
A metallic nanocross geometry sustaining broad dipole and sharp higher order localized surface plasm...
The electromagnetic (EM) coupling between metal nanoparticles (NPs) is of essential importance in na...
We report the properties of plasmons in dense planar arrays of silver single and double nanostructur...
Localized surface plasmon resonance (LSPR) arises when light interacts with metallic nanoparticles (...