We examine in depth the functional dependence of computed core-electron binding and excitation energies based on a total-energy difference approach within Kohn-Sham density functional theory. Twenty-seven functional combinations were studied using a database of reliable experimental data on 18 molecules. The computed core-electron binding energies are largely dependent on the choice of exchange functional. The term value of the first resonant excited state and energy differences between the lowest core-excited states are, however, quite insensitive to the choice of functionals since the errors due to the core-region cancel out. Using these results we define a different exchange functional, which mixes two functionals designed by Perdew and ...
The GW method is routinely used to predict charged valence excitations in molecules and solids. Howe...
The GW method is routinely used to predict charged valence excitations in molecules and solids. Howe...
The local-density approximation of density functional theory (DFT) is remarkably accurate, for insta...
We examine in depth the functional dependence of computed core-electron binding and excitation energ...
We examine in depth the functional dependence of computed core-electron binding and excitation energ...
We systematically studied a real-space pesudopotential method for the calculation of 1s core-electro...
We systematically studied a real-space pesudopotential method for the calculation of 1s core-electro...
[[abstract]]A general method is presented to calculate absolute binding energies of core levels in m...
We systematically studied a real-space pesudopotential method for the calculation of 1s core-electro...
A total of 59 core-electron binding energies (CEBEs) were studied with the Amsterdam Density Functio...
[[abstract]]The 1s → π* inner-shell excitation spectra of seven molecules have been studied using de...
Absolute binding energies of core electrons in molecules and bulk materials can be efficiently calcu...
We use a total energy difference approach to explore the ability of various density functional theor...
We obtain the exchange parameter of hybrid functionals by imposing the fundamental condition of a pi...
We obtain the exchange parameter of hybrid functionals by imposing the fundamental condition of a pi...
The GW method is routinely used to predict charged valence excitations in molecules and solids. Howe...
The GW method is routinely used to predict charged valence excitations in molecules and solids. Howe...
The local-density approximation of density functional theory (DFT) is remarkably accurate, for insta...
We examine in depth the functional dependence of computed core-electron binding and excitation energ...
We examine in depth the functional dependence of computed core-electron binding and excitation energ...
We systematically studied a real-space pesudopotential method for the calculation of 1s core-electro...
We systematically studied a real-space pesudopotential method for the calculation of 1s core-electro...
[[abstract]]A general method is presented to calculate absolute binding energies of core levels in m...
We systematically studied a real-space pesudopotential method for the calculation of 1s core-electro...
A total of 59 core-electron binding energies (CEBEs) were studied with the Amsterdam Density Functio...
[[abstract]]The 1s → π* inner-shell excitation spectra of seven molecules have been studied using de...
Absolute binding energies of core electrons in molecules and bulk materials can be efficiently calcu...
We use a total energy difference approach to explore the ability of various density functional theor...
We obtain the exchange parameter of hybrid functionals by imposing the fundamental condition of a pi...
We obtain the exchange parameter of hybrid functionals by imposing the fundamental condition of a pi...
The GW method is routinely used to predict charged valence excitations in molecules and solids. Howe...
The GW method is routinely used to predict charged valence excitations in molecules and solids. Howe...
The local-density approximation of density functional theory (DFT) is remarkably accurate, for insta...