International audienceThe interaction between phonons and localized plasmons in coupled nanoparticles can be exploited both for modulating the scattered electromagnetic field and the understanding of the mechanical vibrations at nanoscale. In this paper, we demonstrate by numerical analysis an enhanced optomechanical interaction in a film-coupled gold dimer nanoparticles mediated by surface acoustic waves. Two gold nanoridges are placed atop a multilayer structure consisting of a thin dielectric spacer covering a gold film layer on a silicon dioxide substrate. Numerical simulations of the optical properties reveal the existence of three surface localized plasmons in the infrared range with enhanced scattering and narrower linewidths than wi...
Surface plasmon resonance is the resonant oscillations of the free electrons at the interface betwee...
International audienceAcoustic vibrations of assemblies of gold nanoparticles were investigated usin...
In this thesis, we investigate the interaction between light, confined to the nanoscale in the form ...
We demonstrate by numerical analysis enhanced optomechanical interaction in a film-coupled gold nano...
International audienceWe investigate theoretically and numerically the coupling between elastic and ...
Single nanoparticles are shown to develop a localized acoustic resonance, the bouncing mode, when pl...
International audienceThis work is devoted to the fundamental understanding of the interaction betwe...
Data supporting "Interrogating Nanojunctions Using Ultraconfined Acoustoplasmonic Coupling". Abstrac...
International audienceWe study numerically the interaction of surface acoustic waves propagating at ...
University of Minnesota Ph.D. dissertation. January 2016. Major: Physics. Advisor: Mo Li. 1 computer...
International audienceInteraction of light and sound in tiny optical cavities and waveguides is a vi...
To fabricate robust metallic nanostructures with top-down patterning methods such as electron-beam l...
Plasmonic coupling between adjacent metallic nano-particles can be exploited for acousto-plasmonics,...
Surface plasmon resonance is the resonant oscillations of the free electrons at the interface betwee...
International audienceWe show that the interaction between localized surface plasmons sustained by a...
Surface plasmon resonance is the resonant oscillations of the free electrons at the interface betwee...
International audienceAcoustic vibrations of assemblies of gold nanoparticles were investigated usin...
In this thesis, we investigate the interaction between light, confined to the nanoscale in the form ...
We demonstrate by numerical analysis enhanced optomechanical interaction in a film-coupled gold nano...
International audienceWe investigate theoretically and numerically the coupling between elastic and ...
Single nanoparticles are shown to develop a localized acoustic resonance, the bouncing mode, when pl...
International audienceThis work is devoted to the fundamental understanding of the interaction betwe...
Data supporting "Interrogating Nanojunctions Using Ultraconfined Acoustoplasmonic Coupling". Abstrac...
International audienceWe study numerically the interaction of surface acoustic waves propagating at ...
University of Minnesota Ph.D. dissertation. January 2016. Major: Physics. Advisor: Mo Li. 1 computer...
International audienceInteraction of light and sound in tiny optical cavities and waveguides is a vi...
To fabricate robust metallic nanostructures with top-down patterning methods such as electron-beam l...
Plasmonic coupling between adjacent metallic nano-particles can be exploited for acousto-plasmonics,...
Surface plasmon resonance is the resonant oscillations of the free electrons at the interface betwee...
International audienceWe show that the interaction between localized surface plasmons sustained by a...
Surface plasmon resonance is the resonant oscillations of the free electrons at the interface betwee...
International audienceAcoustic vibrations of assemblies of gold nanoparticles were investigated usin...
In this thesis, we investigate the interaction between light, confined to the nanoscale in the form ...