Photodissociation of HOBr. Part II. Calculation of photodissociation cross-sections and photofragment quantum state distributions for the first two UV absorption bands

by Balint-Kurti, G. G.; Fusti-Molnar, L.; Brown, A.

Total absorption cross-sections and product rotational quantum state distributions are computed from first principles for the first two ultraviolet absorption bands of the HOBr molecule corresponding to excitation to the 1 (1)A " and 2 (1)A' states. The dynamical calculations are based on ab initio potential energy surfaces and transition dipole moment surfaces. The theory of triatomic photodissociation is presented in detail, in a manner which is clearer than previously available, and an important correction is made to the theoretical formulae. The theory takes proper account of angular momentum coupling and of the parity of all of the constituent wavefunctions. It is applicable to any initial (or final) angular momentum. The computed absorption bands agree reasonably well with available experimental results but highlight shortcomings of the electronic structure calculations on which these dynamical calculations are based. Predictions are made for the effect of excitation of initial vibrational states on the absorption line shapes.

Journal
Physical Chemistry Chemical Physics
Volume
3
Issue
5
Year
2001
Start Page
702-710
URL
https://dx.doi.org/10.1039/b007647n
ISBN/ISSN
1463-9084; 1463-9076
DOI
10.1039/b007647n