The asymmetric Hubbard dimer is used to study the density-dependence of the exact frequency-dependent kernel of linear-response time-dependent density functional theory. The exact form of the kernel is given, and the limitations of the adiabatic approximation utilizing the exact ground-state functional are shown. The oscillator strength sum rule is proven for lattice Hamiltonians, and relative oscillator strengths are defined appropriately. The method of Casida for extracting oscillator strengths from a frequency-dependent kernel is demonstrated to yield the exact result with this kernel. An unambiguous way of labelling the nature of excitations is given. The fluctuation-dissipation theorem is proven for the ground-state exchange-correlatio...
We introduce a new class of exchange-correlation potentials for a static and time-dependent density-...
We propose a nonadiabatic time-dependent spin-density functional theory (TDSDFT) approach for studyi...
For the calculation of neutral excitations, time-dependent density functional theory (TDDFT) is an e...
The asymmetric Hubbard dimer is used to study the density-dependence of the exact frequency-dependen...
In time-dependent density-functional theory, an important quantity is the exchange-correlation kern...
We have calculated the frequency-dependent exact-exchange (EXX) kernel of time-dependent (TD) densit...
Resumen del trabajo presentado al March Meeting of the American Physical Society, celebrado en New O...
Specific matrix elements of exchange and correlation kernels in time-dependent density-functional th...
Specific matrix elements of exchange and correlation kernels in time-dependent density-functional th...
Specific matrix elements of exchange and correlation kernels in time-dependent density-functional th...
Specific matrix elements of exchange and correlation kernels in time-dependent density-functional th...
Within the adiabatic approximation, time-dependent density functional theory yields only single exci...
We illustrate the scope of time-dependent density-functional theory for strongly correlated (lattice...
We consider an analytically solvable model of two interacting electrons that allows for the calculat...
We illustrate the potential of Time Dependent Density Functional Theory (TDDFT) for describing the n...
We introduce a new class of exchange-correlation potentials for a static and time-dependent density-...
We propose a nonadiabatic time-dependent spin-density functional theory (TDSDFT) approach for studyi...
For the calculation of neutral excitations, time-dependent density functional theory (TDDFT) is an e...
The asymmetric Hubbard dimer is used to study the density-dependence of the exact frequency-dependen...
In time-dependent density-functional theory, an important quantity is the exchange-correlation kern...
We have calculated the frequency-dependent exact-exchange (EXX) kernel of time-dependent (TD) densit...
Resumen del trabajo presentado al March Meeting of the American Physical Society, celebrado en New O...
Specific matrix elements of exchange and correlation kernels in time-dependent density-functional th...
Specific matrix elements of exchange and correlation kernels in time-dependent density-functional th...
Specific matrix elements of exchange and correlation kernels in time-dependent density-functional th...
Specific matrix elements of exchange and correlation kernels in time-dependent density-functional th...
Within the adiabatic approximation, time-dependent density functional theory yields only single exci...
We illustrate the scope of time-dependent density-functional theory for strongly correlated (lattice...
We consider an analytically solvable model of two interacting electrons that allows for the calculat...
We illustrate the potential of Time Dependent Density Functional Theory (TDDFT) for describing the n...
We introduce a new class of exchange-correlation potentials for a static and time-dependent density-...
We propose a nonadiabatic time-dependent spin-density functional theory (TDSDFT) approach for studyi...
For the calculation of neutral excitations, time-dependent density functional theory (TDDFT) is an e...