Total energies and electron affinities of selected atoms are calculated in a local‐spin‐density scheme where the exchange is treated exactly. A much improved overall description of the electronic structure is obtained with respect to the usual Hartree–Fock and local‐spin‐density approximations. The joint use of the exact expression for the exchange and of the local approximation for the correlation gives much better total energies and allows to avoid the failures of the above two schemes in the calculation of negative‐ion binding energies. The accuracy for total energies of first and second row atoms is better than 2 eV, while the typical error for electron affinities is 0.2 eV
A method of describing the nonlocality of the exchange and correlation energy and potential is used ...
We perform the self-consistent calculations on the atomic electron affinity and ionization energy fo...
We perform the self-consistent calculations on the atomic electron affinity and ionization energy fo...
s‐d interconfigurational energies, s‐spin flip energies, and ionization potentials for atoms in the ...
New local functionals for the kinetic and Hartree-Fock exchange energy of atoms are proposed. They a...
A simple method for the calculation of approximate energies of atomic levels is presented in this pa...
In the ≡ method, the self-interaction part of the total exchange-correlation potential in atoms is e...
Through a new local density approximation to the kinetic energy density functional introduced by us ...
We report values for the electron affinities of the light atoms (Z < 36 ) calculated in the local-de...
ABSTRACT Most approximate density functionals do not bind small atomic anions because of large self-...
An analysis of Dunlap's robust fitting approach reveals that the resulting two-electron integral mat...
A parameter-free local-density method called the ≡ method was developed earlier for atoms [N. ...
The Harbola-Sahni formalism for the exchange potential of many-electron systems gives extremely accu...
The chemical-binding properties of atoms belonging to the first three rows of the Periodic Table are...
A new local density functional approach for the calculation of correlation energies of many-electron...
A method of describing the nonlocality of the exchange and correlation energy and potential is used ...
We perform the self-consistent calculations on the atomic electron affinity and ionization energy fo...
We perform the self-consistent calculations on the atomic electron affinity and ionization energy fo...
s‐d interconfigurational energies, s‐spin flip energies, and ionization potentials for atoms in the ...
New local functionals for the kinetic and Hartree-Fock exchange energy of atoms are proposed. They a...
A simple method for the calculation of approximate energies of atomic levels is presented in this pa...
In the ≡ method, the self-interaction part of the total exchange-correlation potential in atoms is e...
Through a new local density approximation to the kinetic energy density functional introduced by us ...
We report values for the electron affinities of the light atoms (Z < 36 ) calculated in the local-de...
ABSTRACT Most approximate density functionals do not bind small atomic anions because of large self-...
An analysis of Dunlap's robust fitting approach reveals that the resulting two-electron integral mat...
A parameter-free local-density method called the ≡ method was developed earlier for atoms [N. ...
The Harbola-Sahni formalism for the exchange potential of many-electron systems gives extremely accu...
The chemical-binding properties of atoms belonging to the first three rows of the Periodic Table are...
A new local density functional approach for the calculation of correlation energies of many-electron...
A method of describing the nonlocality of the exchange and correlation energy and potential is used ...
We perform the self-consistent calculations on the atomic electron affinity and ionization energy fo...
We perform the self-consistent calculations on the atomic electron affinity and ionization energy fo...