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Time-evolution operator method for non-Markovian density matrix propagation in time and space representation : application to laser association of OH in an environment

  • An efficient method for the numerical solution of a non-Markovian, open-system density matrix equation of motion in coordinate representation is developed. We apply the scheme to model simulations of the laser-assisted O+H -> OH association reaction in an environment. The suggested approach is based on the application of the time-evolution operator to the "closed-system" part of the overall Hamiltonian and transformation of the open-system equation of motion to the Heisenberg picture suitable for numerical propagation. A dual role of the system-environment coupling with respect to the infrared (ir) laser-driven association of OH is demonstrated: the association probability is increased due to the coupling at relatively weak laser fields, but decreased at strong laser fields. Moreover, at a certain strength of the ir laser field, the association probability does not depend on the strength of the system-bath coupling at all.

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Author details:Guennaddi K. ParamonovORCiD, Peter SaalfrankORCiDGND
URL:http://pra.aps.org/
DOI:https://doi.org/10.1103/Physreva.79.013415
ISSN:1050-2947
Publication type:Article
Language:English
Year of first publication:2009
Publication year:2009
Release date:2017/03/25
Source:Physical review A. - ISSN 1050-2947. - 79 (2009), 1, Art. 013415
Organizational units:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Chemie
Peer review:Referiert
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