Vibrational spectroscopy of diatomic molecules in static electric fields: An a b i n i t i o study of HF
- 15 February 1988
- journal article
- research article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 88 (4) , 2624-2629
- https://doi.org/10.1063/1.454042
Abstract
For the specific case of the hydrogen fluoride molecule, a detailed determination of the vibrational effects on molecular electrical properties has been made for the lowest four vibrational states. Electrical properties at fixed H–F distances obtained from correlated and SCF‐level ab initio treatments were used along with an ab initio potential energy curve to describe the vibrating system. Using numerical vibrational wave functions, the electrical properties of the low‐lying vibrational states were rigorously calculated by finite differences and these are compared with values obtained with certain approximate means. One and two‐photon, dipole, and quadrupole absorption cross sections were calculated in the same manner. The extensive incorporation of electrical properties and the detailed treatment of the vibrational states provides certain fundamentally new information on (i) the role of vibrational motion in dipole and other types of transitions, and (ii) the effect of external electrical fields on vibrational effects.Keywords
This publication has 17 references indexed in Scilit:
- Stark, Zeeman, and hyperfine properties of v=0, v=1, and the equilibrium configuration of hydrogen fluorideThe Journal of Chemical Physics, 1987
- Effects of non-uniform electric fields on the convergence behavior of energy expansionsChemical Physics, 1987
- Vibrational polarizabilities for H2+, H2 and N2Chemical Physics Letters, 1987
- Vibrational contributions to the hyperpolarizabilities of homonuclear diatomic moleculesMolecular Physics, 1987
- Electrical effects on the vibrational transitions of hydrogen fluoride due to hydrogen bonding and applied fieldsChemical Physics Letters, 1986
- A multipole interaction theory of electric polarization of atomic and molecular assembliesThe Journal of Chemical Physics, 1985
- Molecular multipole moment calculations using universal systematic sequences of even-tempered basis setsMolecular Physics, 1985
- Cartesian polytensorsJournal of Mathematical Physics, 1983
- Perturbation theory of the non-linear optical polarization of an isolated systemMolecular Physics, 1971
- Temperature-Dependent Chemical Shifts in the NMR Spectra of GasesThe Journal of Chemical Physics, 1962