A relativistic four-component study was performed for the XeF(2) molecule by using the Dirac-Coulomb (DC) Hamiltonian and the relativistic adapted Gaussian basis sets (RAGBSs). The comparison of bond lengths obtained showed that relativistic effects on this property are small (increase of only 0.01 angstrom) while the contribution of electron correlation, obtained at CCSD(T) or CCSD-T levels, is more important (increase of 0.05 angstrom). Electron correlation is also dominant over relativistic effects for dissociation energies. Moreover, the correlation-relativity interaction is shown to be negligible for these properties. The electron affinity, the first ionization potential and the double ionization potential are obtained by means of the ...
Single determinant Møller-Plesset perturbation (MP) theory at second order (MP2), third order (MP3),...
The method joining 2-component and scalar relativistic density functional calculations is introduced...
Thesis (Ph.D.)--University of Washington, 2020Spectroscopy is one of the most powerful tools humanit...
The MOLFDIR package of programs is used to perform fully relativistic all-electron Dirac-Fock and Di...
Scalar relativistic coupled cluster calculations are presented for the infrared spectrum of the xeno...
A benchmark study of a number of relativistic correlation methods is presented. Bond lengths, harmon...
In this thesis we describe a method for relativistic quantum mechanical calculations on molecules. W...
Ab initio calculations employing effective core potentials and polarized triple‐zeta basis sets have...
Electronic structure of the XeOF2 molecule and its two complexes with HX (X= F, Cl, Br, I) molecule...
The electronic structure and bonding of UF6 and UF6- are studied within a relativistic framework usi...
The electronic structure and bonding of UF6 and UF6- are studied within a relativistic framework usi...
Ab initio all-electron computations have been carried out for Ce+ and CeF, including the electron co...
Relativistic four-component electronic structure theory using both wave-function (Dirac-Coulomb-Hart...
Our program concerns the theoretical investigations of the dynamic effects of relativity and electro...
A quantum mechanical equation H Psi = E Psi is composed of three components, viz., Hamiltonian H, wa...
Single determinant Møller-Plesset perturbation (MP) theory at second order (MP2), third order (MP3),...
The method joining 2-component and scalar relativistic density functional calculations is introduced...
Thesis (Ph.D.)--University of Washington, 2020Spectroscopy is one of the most powerful tools humanit...
The MOLFDIR package of programs is used to perform fully relativistic all-electron Dirac-Fock and Di...
Scalar relativistic coupled cluster calculations are presented for the infrared spectrum of the xeno...
A benchmark study of a number of relativistic correlation methods is presented. Bond lengths, harmon...
In this thesis we describe a method for relativistic quantum mechanical calculations on molecules. W...
Ab initio calculations employing effective core potentials and polarized triple‐zeta basis sets have...
Electronic structure of the XeOF2 molecule and its two complexes with HX (X= F, Cl, Br, I) molecule...
The electronic structure and bonding of UF6 and UF6- are studied within a relativistic framework usi...
The electronic structure and bonding of UF6 and UF6- are studied within a relativistic framework usi...
Ab initio all-electron computations have been carried out for Ce+ and CeF, including the electron co...
Relativistic four-component electronic structure theory using both wave-function (Dirac-Coulomb-Hart...
Our program concerns the theoretical investigations of the dynamic effects of relativity and electro...
A quantum mechanical equation H Psi = E Psi is composed of three components, viz., Hamiltonian H, wa...
Single determinant Møller-Plesset perturbation (MP) theory at second order (MP2), third order (MP3),...
The method joining 2-component and scalar relativistic density functional calculations is introduced...
Thesis (Ph.D.)--University of Washington, 2020Spectroscopy is one of the most powerful tools humanit...