An efficient approach for the calculation of Franck–Condon integrals of large molecules
- 22 June 2005
- journal article
- research article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 122 (24) , 244101
- https://doi.org/10.1063/1.1924389
Abstract
A general and efficient approach for the calculation of Franck–Condon integrals (FCIs) of large molecules is presented. In a first step, by exploiting the diagonally dominant and sparse structure of the Duschinsky matrix, a model system is constructed for which the Duschinsky matrix takes a block-diagonal form. For each of these blocks separately, the FCIs are calculated discarding all below a certain threshold. From those integrals retained the FCIs of the model system are obtained by simple multiplication. These serve as an estimate for the FCIs of the exact system which are calculated for those integrals which lie above a certain threshold. By systematically decreasing the threshold, the simulation can be reliably converged to the exact result with an arbitrary accuracy. Using this scheme, a considerable reduction of the number of FCIs which have to be calculated is achieved which leads to an improved scaling behavior of the computational effort with system size. The approach has been tested thoroughly for a set of molecules including difficult cases. For the larger systems a speedup of up to three orders of magnitude compared to an exact calculation is observed while the errors can be kept negligible. With this approach accurate calculations of FCIs are feasible also for large molecules encountered in “real-life” chemistry, especially biochemistry and material science.Keywords
This publication has 35 references indexed in Scilit:
- Calculation of the Vibronic Fine Structure in Electronic Spectra at Higher Temperatures. 1. Benzene and PyrazineThe Journal of Physical Chemistry A, 1998
- Recursion relations for multi-dimensional Franck-Condon overlap integralsChemical Physics, 1994
- On the polyatomic franck-condon factorsChemical Physics Letters, 1990
- Efficient evaluation of harmonic polyatomic Franck-Condon factorsChemical Physics Letters, 1987
- Multidimensional Franck–Condon integrals and Duschinsky mixing effectsThe Journal of Chemical Physics, 1986
- Dynamical symmetry of vibronic transitions in polyatomic molecules and the Franck-Condon principleJournal of Molecular Spectroscopy, 1977
- A many-body approach to the vibrational structure in molecular electronic spectra. I. TheoryThe Journal of Chemical Physics, 1976
- Nuclear Motions Associated with Electron Transitions in Diatomic MoleculesPhysical Review B, 1928
- A Theory of Intensity Distribution in Band SystemsPhysical Review B, 1926
- Elementary processes of photochemical reactionsTransactions of the Faraday Society, 1926