Suppression of quantum oscillations and the dependence on site energies in electronic excitation transfer in the Fenna-Matthews-Olson trimer
arXiv:1108.3452 · doi:10.1021/jz201119j
Abstract
Energy transfer in the photosynthetic complex of the Green Sulfur Bacteria known as the Fenna-Matthews-Olson (FMO) complex is studied theoretically taking all three subunits (monomers) of the FMO trimer and the recently found eighth bacteriochlorophyll (BChl) molecule into account. We find that in all considered cases there is very little transfer between the monomers. Since it is believed that the eighth BChl is located near the main light harvesting antenna we look at the differences in transfer between the situation when BChl 8 is initially excited and the usually considered case when BChl 1 or 6 is initially excited. We find strong differences in the transfer dynamics, both qualitatively and quantitatively. When the excited state dynamics is initialized at site eight of the FMO complex, we see a slow exponential-like decay of the excitation. This is in contrast to the oscillations and a relatively fast transfer that occurs when only seven sites or initialization at sites 1 and 6 is considered. Additionally we show that differences in the values of the electronic transition energies found in the literature lead to a large difference in the transfer dynamics.
References in corpus (12)
- Environment-Assisted Quantum Walks in Photosynthetic Energy Transfer
- Dephasing assisted transport: Quantum networks and biomolecules
- Environment-Assisted Quantum Transport
- Highly efficient energy excitation transfer in light-harvesting complexes: The fundamental role of noise-assisted transport
- High-performance solution of hierarchical equations of motions for studying energy-transfer in light-harvesting complexes
- Non-Markovian Quantum Trajectories Versus Master Equations: Finite Temperature Heat Bath
- Influence of Complex Exciton-Phonon Coupling on Optical Absorption and Energy Transfer of Quantum Aggregates
- Pure-state quantum trajectories for general non-Markovian systems do not exist
- Non-Markovian continuous quantum measurement of retarded observables
- Non-Markovian quantum state diffusion for absorption spectra of molecular aggregates
- Spectral properties of molecular oligomers. A non-Markovian quantum state diffusion approach
- Phase directed excitonic transport and its limitations due to environmental influence
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