REAL-TIME PATH-INTEGRAL APPROACH FOR GENERAL 2-STATE MULTIMODE VIBRONIC-COUPLING MODELS

Citation
S. Krempl et al., REAL-TIME PATH-INTEGRAL APPROACH FOR GENERAL 2-STATE MULTIMODE VIBRONIC-COUPLING MODELS, Chemical physics, 206(1-2), 1996, pp. 63-72
Citations number
48
Categorie Soggetti
Physics, Atomic, Molecular & Chemical
Journal title
ISSN journal
03010104
Volume
206
Issue
1-2
Year of publication
1996
Pages
63 - 72
Database
ISI
SICI code
0301-0104(1996)206:1-2<63:RPAFG2>2.0.ZU;2-G
Abstract
In this work path-integral techniques, which are well established for the so-called spin-boson problem, are extended to treat the more gener al case of an electronic two-level system which is diagonally as well as off-diagonally coupled to an arbitrary number of vibrational modes. This class of models includes multi-dimensional conical intersections of molecular potential-energy surfaces as well as the multi-mode Jahn -Teller effect of a doubly degenerate electronic state as special case s. Applying the usual Trotter procedure, a complete factorization of t he propagator of each individual path is achieved by mapping the two-l evel dynamics onto a fictitious four-level dynamics. In the special ca se of linear electronic-vibrational coupling and a harmonic bath, the influence functional is derived. This formulation allows powerful nume rical methods for the evaluation of path integrals, e.g. partial resum mation of paths or Monte Carlo sampling, to be applied to an extended range of vibronic-coupling problems.