Light-matter interaction in plasmonic nanostructures is often treated within the realm of classical optics. However, recent experimental findings show the need to go beyond the classical models to explain and predict the plasmonic response at the nanoscale. A prototypical system is a nanoparticle dimer, extensively studied using both classical and quantum prescriptions. However, only very recently, fully ab initio time-dependent density functional theory (TDDFT) calculations of the optical response of these dimers have been carried out. Here, we review the recent work on the impact of the atomic structure on the optical properties of such systems. We show that TDDFT can be an invaluable tool to simulate the time evolution of plasmonic modes...
Plasmonic dimer systems show great promise in a wide range of applications because of their unique o...
International audienceWe use time-dependent density functional theory (TDDFT) within the jellium mod...
The optical response of a system formed by a quantum emitter and a plasmonic gap nanoantenna is theo...
Light-matter interaction in plasmonic nanostructures is often treated within the realm of classical ...
Light-matter interaction in plasmonic nanostructures is often treated within the realm of classical ...
Light-matter interaction in plasmonic nanostructures is often treated within the realm of classical ...
Light-matter interaction in plasmonic nanostructures is often treated within the realm of classical ...
Metal-cluster dimers are a prototypical scenario for quantum plasmonics. The well-known hybridizatio...
In the new field of quantum plasmonics, plasmonic excitations of silver and gold nanoparticles are u...
Many applications in plasmonics are related to the coupling between metallic nanoparticles (MNPs) or...
We investigate molecular plasmonic excitations sustained in hollow spherical gold nanoparticles usin...
State-of-the-art fabrication and characterization techniques are nowadays able to experimentally con...
ABSTRACT: For metallic nanoparticles less than 10 nm in diameter, localized surface plasmon resonanc...
We develop a quantum kinetic theory of the dynamic response of typical noble metals. Our approach is...
Optical properties of metal nanostructures are the basis of several scientific and technological app...
Plasmonic dimer systems show great promise in a wide range of applications because of their unique o...
International audienceWe use time-dependent density functional theory (TDDFT) within the jellium mod...
The optical response of a system formed by a quantum emitter and a plasmonic gap nanoantenna is theo...
Light-matter interaction in plasmonic nanostructures is often treated within the realm of classical ...
Light-matter interaction in plasmonic nanostructures is often treated within the realm of classical ...
Light-matter interaction in plasmonic nanostructures is often treated within the realm of classical ...
Light-matter interaction in plasmonic nanostructures is often treated within the realm of classical ...
Metal-cluster dimers are a prototypical scenario for quantum plasmonics. The well-known hybridizatio...
In the new field of quantum plasmonics, plasmonic excitations of silver and gold nanoparticles are u...
Many applications in plasmonics are related to the coupling between metallic nanoparticles (MNPs) or...
We investigate molecular plasmonic excitations sustained in hollow spherical gold nanoparticles usin...
State-of-the-art fabrication and characterization techniques are nowadays able to experimentally con...
ABSTRACT: For metallic nanoparticles less than 10 nm in diameter, localized surface plasmon resonanc...
We develop a quantum kinetic theory of the dynamic response of typical noble metals. Our approach is...
Optical properties of metal nanostructures are the basis of several scientific and technological app...
Plasmonic dimer systems show great promise in a wide range of applications because of their unique o...
International audienceWe use time-dependent density functional theory (TDDFT) within the jellium mod...
The optical response of a system formed by a quantum emitter and a plasmonic gap nanoantenna is theo...