Abstract
Chlorosomes, as part of the light-harvesting system of green bacteria, are the largest and most efficient antennae systems in nature. We have studied energy transfer dynamics in the chlorosome in a simplified toy model employing a master equation. Dephasing and relaxation due to environmental fluctuations are included by Lindblad dephasing and Redfield thermalization rates. We find at room temperature three separate time scales, i.e. 25 fs, 250 fs and 2.5 ps and determine the according energy pathways through the hierarchical structure in the chlorosome. Quantum coherence lives up to 150 fs at which time the energy is spread over roughly 12 pigments in our model. © 2014 AIP Publishing LLC.
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Nalbach, P. (2014). Coherent or hopping like energy transfer in the chlorosome ? In AIP Conference Proceedings (Vol. 1610, pp. 135–140). American Institute of Physics Inc. https://doi.org/10.1063/1.4893524
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