We propose an orbital exchange-correlation functional for applying time-dependent density functional theory to many-electron systems coupled to cavity photons. The time nonlocal equation for the electron-photon optimized effective potential (OEP) is derived. In the static limit our OEP energy functional reduces to the Lamb shift of the ground state energy. We test the new approximation in the Rabi model. It is shown that the OEP (i) reproduces quantitatively the exact ground-state energy from the weak to the deep strong coupling regime and (ii) accurately captures the dynamics entering the ultrastrong coupling regime. The present formalism opens the path to a first-principles description of correlated electron-photon systems, bridging the g...
The density-functional approach to quantum electrodynamics extends traditional density-functional th...
This thesis is devoted to the formulation and implications of the time-dependent density functional ...
The electronic system is driven far from its ground state in many applications today: attosecond co...
We propose an orbital exchange-correlation functional for applying time-dependent density functional...
We propose an orbital exchange-correlation functional for applying time-dependent density functional...
We propose an orbital exchange-correlation functional for applying time-dependent density functional...
We propose an orbital exchange-correlation functional for applying time-dependent density functional...
Recently, we and our collaborators have extended time-dependent density functional theory (TDDFT) to...
Many-body perturbation theory (MBPT) opens the possibility to construct approximations to every desi...
The last two decades have witnessed increasing experimental interest in the study and control of man...
121 p.The last two decades have witnessed increasing experimental interest in the study and control ...
The density-functional approach to quantum electrodynamics extends traditional density-functional th...
The density-functional approach to quantum electrodynamics extends traditional density-functional th...
131 p.This thesis is devoted to the formulation and implications of the time-dependent density funct...
We introduce a simple scheme to efficiently compute photon exchange-correlation contributions due to...
The density-functional approach to quantum electrodynamics extends traditional density-functional th...
This thesis is devoted to the formulation and implications of the time-dependent density functional ...
The electronic system is driven far from its ground state in many applications today: attosecond co...
We propose an orbital exchange-correlation functional for applying time-dependent density functional...
We propose an orbital exchange-correlation functional for applying time-dependent density functional...
We propose an orbital exchange-correlation functional for applying time-dependent density functional...
We propose an orbital exchange-correlation functional for applying time-dependent density functional...
Recently, we and our collaborators have extended time-dependent density functional theory (TDDFT) to...
Many-body perturbation theory (MBPT) opens the possibility to construct approximations to every desi...
The last two decades have witnessed increasing experimental interest in the study and control of man...
121 p.The last two decades have witnessed increasing experimental interest in the study and control ...
The density-functional approach to quantum electrodynamics extends traditional density-functional th...
The density-functional approach to quantum electrodynamics extends traditional density-functional th...
131 p.This thesis is devoted to the formulation and implications of the time-dependent density funct...
We introduce a simple scheme to efficiently compute photon exchange-correlation contributions due to...
The density-functional approach to quantum electrodynamics extends traditional density-functional th...
This thesis is devoted to the formulation and implications of the time-dependent density functional ...
The electronic system is driven far from its ground state in many applications today: attosecond co...