We formulate a rigorous method for calculating a nonadiabatic (frequency-dependent) exchange-correlation (XC) kernel appropriate for accurate description of both equilibrium and nonequilibrium properties of strongly correlated systems within the time-dependent density functional theory (TDDFT) via the charge susceptibility, which is in turn obtained from dynamical mean field theory (DMFT) based on the effective multi-orbital Hubbard model. Application to the simple case of the one-orbital Hubbard model already shows the importance of the nonadiabatic kernel as it leads to significant modification of the excitation spectrum - shifting the (adiabatic) peak and disclosing another that is reminiscent of the solution from DMFT. The impact of dyn...
The dynamical mean field theory is extended using the Keldysh Green's function formalism to study st...
We illustrate the scope of time-dependent density-functional theory for strongly correlated (lattice...
The asymmetric Hubbard dimer is used to study the density-dependence of the exact frequency-dependen...
We propose a nonadiabatic time-dependent spin-density functional theory (TDSDFT) approach for studyi...
We propose a nonadiabatic time-dependent spin-density functional theory (TDSDFT) approach for studyi...
We present some details of our recently-proposed Time-Dependent Density-Functional Theory (TDDFT) fo...
We present some details of our recently-proposed Time-Dependent Density-Functional Theory (TDDFT) fo...
We illustrate the potential of Time Dependent Density Functional Theory (TDDFT) for describing the n...
Time-resolved spectroscopy has an emerging role among modern material-characterization techniques. T...
Time-dependent density functional (response) theory (TDDF(R)T) is applied almost exclusively in its ...
The study of nonequilibrium phenomena in correlated lattice systems has developed into one of the mo...
In time-dependent density-functional theory, an important quantity is the exchange-correlation kern...
We introduce a new class of exchange-correlation potentials for a static and time-dependent density-...
We consider an analytically solvable model of two interacting electrons that allows for the calculat...
We propose a description of nonequilibrium systems via a simple protocol that combines exchange-corr...
The dynamical mean field theory is extended using the Keldysh Green's function formalism to study st...
We illustrate the scope of time-dependent density-functional theory for strongly correlated (lattice...
The asymmetric Hubbard dimer is used to study the density-dependence of the exact frequency-dependen...
We propose a nonadiabatic time-dependent spin-density functional theory (TDSDFT) approach for studyi...
We propose a nonadiabatic time-dependent spin-density functional theory (TDSDFT) approach for studyi...
We present some details of our recently-proposed Time-Dependent Density-Functional Theory (TDDFT) fo...
We present some details of our recently-proposed Time-Dependent Density-Functional Theory (TDDFT) fo...
We illustrate the potential of Time Dependent Density Functional Theory (TDDFT) for describing the n...
Time-resolved spectroscopy has an emerging role among modern material-characterization techniques. T...
Time-dependent density functional (response) theory (TDDF(R)T) is applied almost exclusively in its ...
The study of nonequilibrium phenomena in correlated lattice systems has developed into one of the mo...
In time-dependent density-functional theory, an important quantity is the exchange-correlation kern...
We introduce a new class of exchange-correlation potentials for a static and time-dependent density-...
We consider an analytically solvable model of two interacting electrons that allows for the calculat...
We propose a description of nonequilibrium systems via a simple protocol that combines exchange-corr...
The dynamical mean field theory is extended using the Keldysh Green's function formalism to study st...
We illustrate the scope of time-dependent density-functional theory for strongly correlated (lattice...
The asymmetric Hubbard dimer is used to study the density-dependence of the exact frequency-dependen...