Chlorosomes stand out for their highly efficient excitation energy transfer (EET) in extreme low light conditions. Yet, little is known about the EET when a chlorosome is excited to a pure state that is an eigenstate of the exciton Hamiltonian. In this work, we consider the dynamic disorder in the intermolecular electronic coupling explicitly by calculating the electronic coupling terms in the Hamiltonian using nuclear coordinates that are taken from molecular dynamics simulation trajectories. We show that this dynamic disorder is capable of driving the evolution of the exciton, being a stationary state of the initial Hamiltonian. In particular, long-distance excitation energy transfer between domains of high exciton population and oscillat...
Author Institution: Department of Chemistry, The University of Chicago, Chicago USAExcited states in...
Unraveling the nature of energy transport in multi-chromophoric photosynthetic complexes is essentia...
We investigate photosynthetic excitation energy transfer (EET) in the presence of realistic electron...
Chlorosomes are supramolecular aggregates that contain thousands of bacteriochlorophyll molecules. T...
Chlorosomes are the largest light harvesting complexes in nature and consist of many bacteriochlorop...
We present a theoretical study of excitation dynamics in the chlorosome antenna complex of green pho...
ABSTRACT: Chlorosomes are likely the largest and most efficient natural light-harvesting photosynthe...
A chlorosome, a photosynthetic light-harvesting complex found in green sulfur bacteria, is an aggreg...
I investigate the dynamics of multi-state central systems coupled bilinearly to an external oscilla...
© 2015 American Chemical Society. Chlorosomes are efficient light-harvesting antennas containing up ...
Natural light-harvesting antennae employ a dense array of chromophores to optimize energy transport ...
The accurate simulation of excitonic energy transfer in molecular complexes with coupled electronic ...
We show that the excitonic coupling in molecular crystals undergoes a very large fluctuation at room...
Applying nonadiabatic excited-state molecular dynamics, we investigate excitation energy transfer an...
The experimental observation of long-lived quantum coherences in the Fenna-Matthews-Olson (FMO) ligh...
Author Institution: Department of Chemistry, The University of Chicago, Chicago USAExcited states in...
Unraveling the nature of energy transport in multi-chromophoric photosynthetic complexes is essentia...
We investigate photosynthetic excitation energy transfer (EET) in the presence of realistic electron...
Chlorosomes are supramolecular aggregates that contain thousands of bacteriochlorophyll molecules. T...
Chlorosomes are the largest light harvesting complexes in nature and consist of many bacteriochlorop...
We present a theoretical study of excitation dynamics in the chlorosome antenna complex of green pho...
ABSTRACT: Chlorosomes are likely the largest and most efficient natural light-harvesting photosynthe...
A chlorosome, a photosynthetic light-harvesting complex found in green sulfur bacteria, is an aggreg...
I investigate the dynamics of multi-state central systems coupled bilinearly to an external oscilla...
© 2015 American Chemical Society. Chlorosomes are efficient light-harvesting antennas containing up ...
Natural light-harvesting antennae employ a dense array of chromophores to optimize energy transport ...
The accurate simulation of excitonic energy transfer in molecular complexes with coupled electronic ...
We show that the excitonic coupling in molecular crystals undergoes a very large fluctuation at room...
Applying nonadiabatic excited-state molecular dynamics, we investigate excitation energy transfer an...
The experimental observation of long-lived quantum coherences in the Fenna-Matthews-Olson (FMO) ligh...
Author Institution: Department of Chemistry, The University of Chicago, Chicago USAExcited states in...
Unraveling the nature of energy transport in multi-chromophoric photosynthetic complexes is essentia...
We investigate photosynthetic excitation energy transfer (EET) in the presence of realistic electron...