The correlation between transport properties across subnanometric metallic gaps and the optical response of the system is a complex effect that is determined by the fine atomic-scale details of the junction structure. As experimental advances are progressively accessing transport and optical characterization of smaller nanojunctions, a clear connection between the structural, electronic, and optical properties in these nanocavities is needed. Using ab initio calculations, we present here a study of the simultaneous evolution of the structure and the optical response of a plasmonic junction as the particles forming the cavity, two Na380 clusters, approach and retract. Atomic reorganizations are responsible for a large hysteresis of the plasm...
Resumen del trabajo presentado a la NanoSpain Conference, celebrada en San Sebastián del 7 al 10 de ...
Optical properties of metal nanostructures are the basis of several scientific and technological app...
The ability of localized surface plasmons to squeeze light and engineer nanoscale electromagnetic fi...
Resumen del póster presentado al IPC–PAMS Theory Workshop: "Towards reality in modelling of molecula...
Resumen del trabajo presentado al APS March Meeting, celebrado en Baltimore, Maryland (USA) del 14 a...
By means of ab-initio time dependent density functional theory calculations carried out on an protot...
ABSTRACT: Quantum effects in plasmonic systems play an important role in defining the optical respon...
The coupling of optical excitation and electron transport through a sodium atom in a plasmonic dimer...
Quantum effects in plasmonic systems play an important role in defining the optical response of stru...
Quantum effects in plasmonic systems play an important role in defining the optical response of stru...
Metallic nanoparticles placed in close proximity support strong localized surface plasmon resonances...
Plasmonic interactions between two metallic tips are dynamically studied in a supercontinuum dark-fi...
Resumen del trabajo presentado a la Spanish Conference on Nanophotonics (Conferencia Española de Nan...
Plasmonic core–molecule–shell (CMS) nanojunctions provide a versatile platform for studying electron...
Resumen del trabajo presentado a la Conferencia Plasmonica, celebrada en Lecce (Italia) del 5 al 7 d...
Resumen del trabajo presentado a la NanoSpain Conference, celebrada en San Sebastián del 7 al 10 de ...
Optical properties of metal nanostructures are the basis of several scientific and technological app...
The ability of localized surface plasmons to squeeze light and engineer nanoscale electromagnetic fi...
Resumen del póster presentado al IPC–PAMS Theory Workshop: "Towards reality in modelling of molecula...
Resumen del trabajo presentado al APS March Meeting, celebrado en Baltimore, Maryland (USA) del 14 a...
By means of ab-initio time dependent density functional theory calculations carried out on an protot...
ABSTRACT: Quantum effects in plasmonic systems play an important role in defining the optical respon...
The coupling of optical excitation and electron transport through a sodium atom in a plasmonic dimer...
Quantum effects in plasmonic systems play an important role in defining the optical response of stru...
Quantum effects in plasmonic systems play an important role in defining the optical response of stru...
Metallic nanoparticles placed in close proximity support strong localized surface plasmon resonances...
Plasmonic interactions between two metallic tips are dynamically studied in a supercontinuum dark-fi...
Resumen del trabajo presentado a la Spanish Conference on Nanophotonics (Conferencia Española de Nan...
Plasmonic core–molecule–shell (CMS) nanojunctions provide a versatile platform for studying electron...
Resumen del trabajo presentado a la Conferencia Plasmonica, celebrada en Lecce (Italia) del 5 al 7 d...
Resumen del trabajo presentado a la NanoSpain Conference, celebrada en San Sebastián del 7 al 10 de ...
Optical properties of metal nanostructures are the basis of several scientific and technological app...
The ability of localized surface plasmons to squeeze light and engineer nanoscale electromagnetic fi...