In approximate Kohn-Sham density-functional theory, self-interaction manifests itself as the dependence of the energy of an orbital on its fractional occupation. This unphysical behavior translates into qualitative and quantitative errors that pervade many fundamental aspects of density-functional predictions. Here, we first examine self-interaction in terms of the discrepancy between total and partial electron removal energies, and then highlight the importance of imposing the generalized Koopmans' condition-that identifies orbital energies as opposite total electron removal energies-to resolve this discrepancy. In the process, we derive a correction to approximate functionals that, in the frozen-orbital approximation, eliminates the unphy...
We present an alternative to the Kohn-Sham formulation of density-functional theory for the ground-s...
The local-density approximation of density functional theory (DFT) is remarkably accurate, for insta...
The exchange-correlation energy in Kohn-Sham density functional theory can be expressed exactly in t...
In approximate Kohn-Sham density-functional theory, self-interaction manifests itself as the depende...
In approximate Kohn-Sham density-functional theory, self-interaction manifests itself as the depende...
Energy functionals which depend explicitly on orbital densities, rather than on the total charge den...
Energy functionals which depend explicitly on orbital densities, rather than on the total charge den...
Density functional theory (DFT), in its approximate Kohn-Sham formalism, is a highly-acclaimed compu...
An analog of Koopmans' theorem is formulated for the energies, epsilon a, of virtual Kohn-Sham (KS) ...
The meaning of orbital energies (OOEs) in Kohn-Sham (KS) density functional theory (DFT) is subject ...
The self-interaction error (SIE) is one of the major drawbacks of practical exchange-correlation fun...
A generalization of the Kohn--Sham approach is derived where the correlation-energy functional depen...
The self-interaction error (SIE) is one of the major drawbacks of practical exchange-correlation fun...
We present an atomic-orbital-based approximate scheme for self-interaction correction (SIC) to the l...
The essential aspects of zero-temperature grand-canonical ensemble density-functional theory are rev...
We present an alternative to the Kohn-Sham formulation of density-functional theory for the ground-s...
The local-density approximation of density functional theory (DFT) is remarkably accurate, for insta...
The exchange-correlation energy in Kohn-Sham density functional theory can be expressed exactly in t...
In approximate Kohn-Sham density-functional theory, self-interaction manifests itself as the depende...
In approximate Kohn-Sham density-functional theory, self-interaction manifests itself as the depende...
Energy functionals which depend explicitly on orbital densities, rather than on the total charge den...
Energy functionals which depend explicitly on orbital densities, rather than on the total charge den...
Density functional theory (DFT), in its approximate Kohn-Sham formalism, is a highly-acclaimed compu...
An analog of Koopmans' theorem is formulated for the energies, epsilon a, of virtual Kohn-Sham (KS) ...
The meaning of orbital energies (OOEs) in Kohn-Sham (KS) density functional theory (DFT) is subject ...
The self-interaction error (SIE) is one of the major drawbacks of practical exchange-correlation fun...
A generalization of the Kohn--Sham approach is derived where the correlation-energy functional depen...
The self-interaction error (SIE) is one of the major drawbacks of practical exchange-correlation fun...
We present an atomic-orbital-based approximate scheme for self-interaction correction (SIC) to the l...
The essential aspects of zero-temperature grand-canonical ensemble density-functional theory are rev...
We present an alternative to the Kohn-Sham formulation of density-functional theory for the ground-s...
The local-density approximation of density functional theory (DFT) is remarkably accurate, for insta...
The exchange-correlation energy in Kohn-Sham density functional theory can be expressed exactly in t...