The quartic force field of H2O determined by many-body methods that include quadruple excitation effects
- 1 July 1979
- journal article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 71 (1) , 281-291
- https://doi.org/10.1063/1.438069
Abstract
Many‐body perturbation theory (MBPT) and coupled cluster methods are employed in an investigation of the potential energy surface of H2O in the vicinity of its equilibrium geometry. The basis set of 39 Slater‐type orbitals is the same as that previously used in a configuration interaction study (limited to all single and double excitations, SD‐CI) of this surface, and is capable of accounting for 80% of the total correlation energy of the molecule. Detailed comparisons among the results of the various methods are presented, with particular reference to the role of size extensivity in providing a reliable model for the prediction of the shape of the surface. The predicted quartic force field obtained by the coupled cluster doubles (CCD) and by several MBPT models is in very good agreement with experiment. The inclusion of quadruple excitations, which account for about 5% of the correlation energy, is found to have a significant effect on the shape of the surface, bringing the predicted force field into substantially better agreement with experiment than that obtained with SD‐CI.Keywords
This publication has 44 references indexed in Scilit:
- Accurate binding energies of diborane, borane carbonyl, and borazane determined by many-body perturbation theoryJournal of the American Chemical Society, 1979
- Many body perturbation calculations and coupled electron pair modelsComputer Physics Communications, 1979
- A semi‐empirical MO theory for ionization potentials and electron affinitiesInternational Journal of Quantum Chemistry, 1977
- A b i n i t i o SCF and CI studies on the ground state of the water molecule. II. Potential energy and property surfacesThe Journal of Chemical Physics, 1976
- The N2 problem in molecular CI calculationsInternational Journal of Quantum Chemistry, 1976
- Many-body perturbation theory applied to molecules: Analysis and correlation energy calculation for Li2, N2, and H3The Journal of Chemical Physics, 1976
- Cluster expansion analysis for delocalized systemsInternational Journal of Quantum Chemistry, 1969
- Calcul de l'Énergie de Corrélation pour l'État Fondamental de la Molécule d'AcétylèneInternational Journal of Quantum Chemistry, 1967
- Correlation Effects in AtomsPhysical Review B, 1963
- Compound pair states in imperfect Fermi gasesNuclear Physics, 1961