We propose a description of nonequilibrium systems via a simple protocol that combines exchange-correlation potentials from density functional theory with self-energies of many-body perturbation theory. The approach, aimed to avoid double counting of interactions, is tested against exact results in Hubbard-type systems, with respect to interaction strength, perturbation speed and inhomogeneity, and system dimensionality and size. In many regimes, we find significant improvement over adiabatic time dependent density functional theory or second Born nonequilibrium Green's function approximations. We briefly discuss the reasons for the residual discrepancies, and directions for future work. © 2016 American Physical Society
We demonstrate how a recently developed method Nielsen et al. [Nielsen et al., EPL 101, 33001 (2013)...
Time-dependent density functional theory (TDDFT) is a method of choice for calculations of excitatio...
Time-dependent density functional theory (TDDFT) is a method of choice for calculations of excitatio...
We propose a description of nonequilibrium systems via a simple protocol that combines exchangecorre...
We illustrate the potential of Time Dependent Density Functional Theory (TDDFT) for describing the n...
We illustrate the scope of time-dependent density-functional theory for strongly correlated (lattice...
We introduce a new class of exchange-correlation potentials for a static and time-dependent density-...
WOS:000361155700003International audienceIn their famous paper, Kohn and Sham formulated a formally ...
WOS:000361155700003International audienceIn their famous paper, Kohn and Sham formulated a formally ...
Time-resolved spectroscopy has an emerging role among modern material-characterization techniques. T...
WOS:000361155700003International audienceIn their famous paper, Kohn and Sham formulated a formally ...
WOS:000361155700003International audienceIn their famous paper, Kohn and Sham formulated a formally ...
WOS:000361155700003International audienceIn their famous paper, Kohn and Sham formulated a formally ...
When running time-dependent density functional theory (TDDFT) calculations for real-time simulations...
Density functional theory provides the basis for uncounted studies of ground-state properties of man...
We demonstrate how a recently developed method Nielsen et al. [Nielsen et al., EPL 101, 33001 (2013)...
Time-dependent density functional theory (TDDFT) is a method of choice for calculations of excitatio...
Time-dependent density functional theory (TDDFT) is a method of choice for calculations of excitatio...
We propose a description of nonequilibrium systems via a simple protocol that combines exchangecorre...
We illustrate the potential of Time Dependent Density Functional Theory (TDDFT) for describing the n...
We illustrate the scope of time-dependent density-functional theory for strongly correlated (lattice...
We introduce a new class of exchange-correlation potentials for a static and time-dependent density-...
WOS:000361155700003International audienceIn their famous paper, Kohn and Sham formulated a formally ...
WOS:000361155700003International audienceIn their famous paper, Kohn and Sham formulated a formally ...
Time-resolved spectroscopy has an emerging role among modern material-characterization techniques. T...
WOS:000361155700003International audienceIn their famous paper, Kohn and Sham formulated a formally ...
WOS:000361155700003International audienceIn their famous paper, Kohn and Sham formulated a formally ...
WOS:000361155700003International audienceIn their famous paper, Kohn and Sham formulated a formally ...
When running time-dependent density functional theory (TDDFT) calculations for real-time simulations...
Density functional theory provides the basis for uncounted studies of ground-state properties of man...
We demonstrate how a recently developed method Nielsen et al. [Nielsen et al., EPL 101, 33001 (2013)...
Time-dependent density functional theory (TDDFT) is a method of choice for calculations of excitatio...
Time-dependent density functional theory (TDDFT) is a method of choice for calculations of excitatio...