Using large component basis sets of distributed s-type Gaussian functions with positions and exponents optimized so as to support Hartree-Fock total energies with an accuracy approaching the sub-muhartree level, Dirac-Hartree-Fock-Coulomb calculations are reported for the ground states of the open-shell molecular systems HeH and BeH. The small component basis sets are obtained by applying the (strict) kinetic balance condition. Explicit expressions are given for the electron repulsion integrals required for relativistic atomic and molecular electronic structure calculation, using basis sets of distributed G-spinors. (C) 2004 Wiley Periodicals, Inc
A novel scheme to improve the computational efficiency of the Dirac-Hartree-Fock method was implemen...
Relativistic basis sets for first-row atoms have been constructed by using the near-Hartree-Fock (no...
The goal of this thesis has been to develop from scratch an ab initio computer program for calculati...
Using large component basis sets of distributed s-type Gaussian functions with positions and exponen...
Using large component basis sets of distributed s-type Gaussian functions with positions and exponen...
A comparison is made of the accuracy achieved in finite difference and finite basis set approximatio...
A comparison is made of the accuracy achieved in finite difference and finite basis set approximatio...
A comparison is made of the accuracy achieved in finite difference and finite basis set approximatio...
A comparison is made of the accuracy achieved in finite difference and finite basis set approximatio...
A comparison is made of the accuracy achieved in finite difference and finite basis set approximatio...
A comparison is made of the accuracy achieved in finite difference and finite basis set approximatio...
Distributed basis sets of s-type Gaussian functions are determined by invoking the variation princip...
Distributed basis sets of s-type Gaussian functions are determined by invoking the variation princip...
Distributed basis sets of s-type Gaussian functions are determined by invoking the variation princip...
The purpose of this work is to analyze the relativistic Gaussian basis sets obtained with a recently...
A novel scheme to improve the computational efficiency of the Dirac-Hartree-Fock method was implemen...
Relativistic basis sets for first-row atoms have been constructed by using the near-Hartree-Fock (no...
The goal of this thesis has been to develop from scratch an ab initio computer program for calculati...
Using large component basis sets of distributed s-type Gaussian functions with positions and exponen...
Using large component basis sets of distributed s-type Gaussian functions with positions and exponen...
A comparison is made of the accuracy achieved in finite difference and finite basis set approximatio...
A comparison is made of the accuracy achieved in finite difference and finite basis set approximatio...
A comparison is made of the accuracy achieved in finite difference and finite basis set approximatio...
A comparison is made of the accuracy achieved in finite difference and finite basis set approximatio...
A comparison is made of the accuracy achieved in finite difference and finite basis set approximatio...
A comparison is made of the accuracy achieved in finite difference and finite basis set approximatio...
Distributed basis sets of s-type Gaussian functions are determined by invoking the variation princip...
Distributed basis sets of s-type Gaussian functions are determined by invoking the variation princip...
Distributed basis sets of s-type Gaussian functions are determined by invoking the variation princip...
The purpose of this work is to analyze the relativistic Gaussian basis sets obtained with a recently...
A novel scheme to improve the computational efficiency of the Dirac-Hartree-Fock method was implemen...
Relativistic basis sets for first-row atoms have been constructed by using the near-Hartree-Fock (no...
The goal of this thesis has been to develop from scratch an ab initio computer program for calculati...