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Calculation of the vibrational wave function of polyatomic molecules.

Authors :
Åstrand, Per-Olof
Ruud, Kenneth
Taylor, Peter R.
Source :
Journal of Chemical Physics; 2/8/2000, Vol. 112 Issue 6, 6 Diagrams, 16 Charts
Publication Year :
2000

Abstract

A modified perturbation approach for the calculation of the vibrational wave function of polyatomic molecules is discussed. It is demonstrated that if the expansion point of the potential is determined variationally, the leading first-order term in the perturbation expansion of the vibrational wave function vanishes. Furthermore, the new expansion point is a very good approximation to the vibrationally averaged molecular geometry. The required third derivatives of the potential energy with respect to geometrical distortions have been calculated by numerical differentiation. Two approaches are discussed, one based on the differentiation of the molecular Hessian and the other on the molecular gradient. Results are presented for the averaged molecular geometry of a large set of molecules, including studies of electronically excited states and effects of electron correlation. The largest molecule included is butane with a total of 14 atoms. © 2000 American Institute of Physics. [ABSTRACT FROM AUTHOR]

Subjects

Subjects :
WAVE functions
MOLECULAR dynamics

Details

Language :
English
ISSN :
00219606
Volume :
112
Issue :
6
Database :
Complementary Index
Journal :
Journal of Chemical Physics
Publication Type :
Academic Journal
Accession number :
4411160