We present a combined cavity quantum electrodynamics/ab initio electronic structure approach for simulating plasmon-molecule interactions in the time domain. The simple Jaynes-Cummings-type model Hamiltonian typically utilized in such simulations is replaced with one in which the molecular component of the coupled system is treated in a fully ab initio way, resulting in a computationally efficient description of general plasmon-molecule interactions. Mutual polarization effects are easily incorporated within a standard ground-state Hartree-Fock computation, and time-dependent simulations carry the same formal computational scaling as real-time time-dependent Hartree-Fock theory. As a proof of principle, we apply this generalized method to t...
In the first part, we investigate plasmon-polaritons in cubic metacrystals of spherical metallic nan...
Within the Tamm-Dancoff approximation, ab initio approaches describe excitons as packets of electron...
Using large-scale, real-time, quantum dynamics calculations, we present a detailed analysis of elect...
We present a combined cavity quantum electrodynamics/ab initio electronic structure approach for sim...
The optical properties of molecules close to plasmonic nanostructures greatly differ from their isol...
The efficiency of plasmonic metallic nanoparticles in harvesting and concentrating light energy in t...
International audiencePlasmonic nanocavities enable the confinement of molecules and electromagnetic...
Light-matter interaction in plasmonic nanostructures is often treated within the realm of classical ...
Near-field interactions between plasmons and molecules are treated in a simple unified approach. The...
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 ...
Many applications in plasmonics are related to the coupling between metallic nanoparticles (MNPs) or...
Coupling of light to charges in a metallic nanoparticle leads to hybrid light-matter states, localis...
The multidisciplinary nature of the research in molecular nanoplasmonics, i.e. the use of plasmonic ...
The key for light-harvesting in pigment-protein complexes are molecular excitons, delocalized excite...
In the first part, we investigate plasmon-polaritons in cubic metacrystals of spherical metallic nan...
Within the Tamm-Dancoff approximation, ab initio approaches describe excitons as packets of electron...
Using large-scale, real-time, quantum dynamics calculations, we present a detailed analysis of elect...
We present a combined cavity quantum electrodynamics/ab initio electronic structure approach for sim...
The optical properties of molecules close to plasmonic nanostructures greatly differ from their isol...
The efficiency of plasmonic metallic nanoparticles in harvesting and concentrating light energy in t...
International audiencePlasmonic nanocavities enable the confinement of molecules and electromagnetic...
Light-matter interaction in plasmonic nanostructures is often treated within the realm of classical ...
Near-field interactions between plasmons and molecules are treated in a simple unified approach. The...
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 ...
Many applications in plasmonics are related to the coupling between metallic nanoparticles (MNPs) or...
Coupling of light to charges in a metallic nanoparticle leads to hybrid light-matter states, localis...
The multidisciplinary nature of the research in molecular nanoplasmonics, i.e. the use of plasmonic ...
The key for light-harvesting in pigment-protein complexes are molecular excitons, delocalized excite...
In the first part, we investigate plasmon-polaritons in cubic metacrystals of spherical metallic nan...
Within the Tamm-Dancoff approximation, ab initio approaches describe excitons as packets of electron...
Using large-scale, real-time, quantum dynamics calculations, we present a detailed analysis of elect...