Electronic energy transfer in model photosynthetic systems: Markovian vs. non-Markovian dynamics
Abstract
A simple numerical algorithm for solving the non-Markovian master equation in the second Born approximation is developed and used to propagate the traditional dimer system that models electronic energy transfer in photosynthetic systems. Specifically, the coupled integro-differential equations for the reduced density 
- This article is part of the themed collection: Coherence and Control in Chemistry
 
                



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