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Title: Effect of strong electron correlation on the efficiency of photosynthetic light harvesting

Journal Article · · Journal of Chemical Physics
DOI:https://doi.org/10.1063/1.4746244· OSTI ID:22098972
 [1]
  1. Department of Chemistry and James Franck Institute, University of Chicago, Chicago, Illinois 60637 (United States)

Research into the efficiency of photosynthetic light harvesting has focused on two factors: (1) entanglement of chromophores, and (2) environmental noise. While chromophores are conjugated {pi}-bonding molecules with strongly correlated electrons, previous models have treated this correlation implicitly without a mathematical variable to gauge correlation-enhanced efficiency. Here we generalize the single-electron/exciton models to a multi-electron/exciton model that explicitly shows the effects of enhanced electron correlation within chromophores on the efficiency of energy transfer. The model provides more detailed insight into the interplay of electron correlation within chromophores and electron entanglement between chromophores. Exploiting this interplay is assisting in the design of new energy-efficient materials, which are just beginning to emerge.

OSTI ID:
22098972
Journal Information:
Journal of Chemical Physics, Vol. 137, Issue 7; Other Information: (c) 2012 American Institute of Physics; Country of input: International Atomic Energy Agency (IAEA); ISSN 0021-9606
Country of Publication:
United States
Language:
English