4.7 Article

Accounting for intra-molecular vibrational modes in open quantum system description of molecular systems

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JOURNAL OF CHEMICAL PHYSICS
卷 137, 期 20, 页码 -

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AMER INST PHYSICS
DOI: 10.1063/1.4765329

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  1. DFG [Ei 872/1-1]
  2. DARPA [N66001-09-1-2026]

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Electronic-vibrational dynamics in molecular systems that interact with an environment involve a large number of degrees of freedom and are therefore often described by means of open quantum system approaches. A popular approach is to include only the electronic degrees of freedom into the system part and to couple these to a non-Markovian bath of harmonic vibrational modes that is characterized by a spectral density. Since this bath represents both intra-molecular and external vibrations, it is important to understand how to construct a spectral density that accounts for intramolecular vibrational modes that couple further to other modes. Here, we address this problem by explicitly incorporating an intra-molecular vibrational mode together with the electronic degrees of freedom into the system part and using the Fano theory for a resonance coupled to a continuum to derive an effective bath spectral density, which describes the contribution of intra-molecular modes. We compare this effective model for the intra-molecular mode with the method of pseudomodes, a widely used approach in simulation of non-Markovian dynamics. We clarify the difference between these two approaches and demonstrate that the respective resulting dynamics and optical spectra can be very different. (C) 2012 American Institute of Physics. [http://dx.doi.org/10.1063/1.4765329]

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