A simple theoretical model for the van der Waals potential at intermediate distances. IV. The bond distance dependence of the potential hypersurfaces for He–H2 and Ne–H2 also for the repulsive region
- 1 March 1982
- journal article
- research article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 76 (5), 2524-2536
- https://doi.org/10.1063/1.443284
Abstract
A simple theory for the van der Waals potential in the region of the well minimum, which previously has been successfully applied to the prediction of the isotropic atom–atom [J. Chem. Phys. 66, 1496 (1977)] and the anisotropic atom–diatom potentials [J. Chem. Phys. 68, 5501 (1978); 74, 1148 (1981)], has been extended to calculate the full potential hypersurface including the H 2 bond distance dependence for He–H 2 and Ne–H 2 . By taking advantage of the known potential parameters in the united atom limits He–He and Ne–He, respectively, the potential hypersurface is predicted over a wide range of bond distances. The model is modified to also provide a good estimate of the true potential in the repulsive region (V≃1 eV ). The results for He–H 2 are compared with a recently calculated CI type hypersurface [Meyer, Hariharan, and Kutzelnigg, J. Chem. Phys. 73, 1880 (1980)] and found to be in good agreement in the region of intermediate distances of the center of masses (R≈3.0 Å ), and for H 2 bond distances r in the range (0.50–1.00 Å ). The R dependence of the vibrational coupling matrix elements are presented for both systems and the implications for the vibrational relaxation rates of both systems are discussed.Keywords
This publication has 45 references indexed in Scilit:
- A simple theoretical model for the van der Waals potential at intermediate distances. III. Anisotropic potentials of Ar–H2, Kr–H2, and Xe–H2The Journal of Chemical Physics, 1981
- The anisotropic interaction potential of D2Ne from state-to-state differential cross sections for rotational excitationThe Journal of Chemical Physics, 1980
- Use of semiclassical collision theory to compare analytic fits to the interaction potential for vibrational excitation of H2 by HeThe Journal of Chemical Physics, 1975
- Ne–H–H potential energy surface including electron correlationThe Journal of Chemical Physics, 1975
- A p r i o r i low temperature vibrational relaxation rates for He–H2The Journal of Chemical Physics, 1975
- On analytic fits to the Gordon-Secrest potential energy surface for He–H2: A replyThe Journal of Chemical Physics, 1974
- On analytic fits to the Gordon-Secrest potential energy surface for He–H2The Journal of Chemical Physics, 1974
- Potential surface dependence of vibrationally inelastic collisions between He and H2The Journal of Chemical Physics, 1974
- The bounding properties of the multipoint Padé approximant to a series of Stieltjes on the real lineJournal of Mathematical Physics, 1973
- Helium-Atom–Hydrogen-Molecule Potential Surface Employing the LCAO–MO–SCF and CI MethodsThe Journal of Chemical Physics, 1970