Using relaxation theory to compute the electronic absorption spectrum of a chromophore coupled to a condensed phase environment
- 1 October 1992
- journal article
- research article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 97 (7) , 5081-5097
- https://doi.org/10.1063/1.463829
Abstract
A time-dependent method for computing the electronic absorption spectrum of a chromophore in a condensed phase environment is presented. The cumulant expansion-based relaxation theory of Nitzan and Silbey [J. Chem. Phys. 60, 4070 (1974)] is adapted to enable approximate calculation of the absorption spectrum of a general system coupled to an arbitrary bath. The system-bath interaction potential operator is expanded to second order in a time-dependent perturbation series and then exponentiated in an attempt to capture the long-time dynamics. The dynamics of the bath is contained in Heisenberg correlation functions of the bath operators which are related to their classical counterparts. The formalism is applied to a harmonic and an anharmonic (Morse) system oscillator coupled to a harmonic bath. The exactly solvable harmonic model, a two-dimensional model of a Morse oscillator coupled to a single bath oscillator and a comparison to the time-dependent Hartree approximation are used to illustrate the accuracy of the formalism.Keywords
This publication has 45 references indexed in Scilit:
- Canonical formulation of quantum tunneling with dissipationPhysical Review Letters, 1992
- Reduced partial cross sections for UV photodesorption of molecules from finite temperature surfacesThe Journal of Chemical Physics, 1991
- Dissociation and predissociation on coupled electronic potential energy surfaces: A three-dimensional wave packet dynamical studyThe Journal of Chemical Physics, 1991
- Time-dependent Hartree wave packet dynamical techniques for computation of electronically excited state optical spectra of many-body quantum systemsThe Journal of Chemical Physics, 1989
- Proton transfer in benzoic acid crystals: A chemical spin–boson problem. Theoretical analysis of nuclear magnetic resonance, neutron scattering, and optical experimentsThe Journal of Chemical Physics, 1988
- Comparison of experiment and theory for the resonance Raman spectrum of I2 in solution. III. Perfluorohexane and chloroformThe Journal of Chemical Physics, 1987
- Exact time-dependent quantum mechanical dissociation dynamics of I2He: Comparison of exact time-dependent quantum calculation with the quantum time-dependent self-consistent field (TDSCF) approximationThe Journal of Chemical Physics, 1987
- Dynamics of the dissipative two-state systemReviews of Modern Physics, 1987
- Nonlinear generalized Langevin equationsJournal of Statistical Physics, 1973
- Computation of the intensities of vibrational spectra of electronic bands in diatomic moleculesPhysica, 1951