The experimental observation of long-lived quantum coherences in the Fenna-Matthews-Olson (FMO) light-harvesting complex at low temperatures has challenged general intuition in the field of complex molecular systems and provoked considerable theoretical effort in search of explanations. Here we report on room-temperature calculations of the excited-state dynamics in FMO using a combination of molecular dynamics simulations and electronic structure calculations. Thus we obtain trajectories for the Hamiltonian of this system which contains time-dependent vertical excitation energies of the individual bacteriochlorophyll molecules and their mutual electronic couplings. The distribution of energies and couplings is analyzed together with possib...
The idea that excitonic (electronic) coherences are of fundamental importance to natural photosynthe...
Energy transfer in the photosynthetic Fenna–Matthews–Olson (FMO) complex of green sulfur bacteria is...
In green-sulfur bacteria sunlight is absorbed by antenna structures termed chlorosomes, and transfer...
The experimental observation of long-lived quantum coherences in the Fenna-Matthews-Olson (FMO) ligh...
Item does not contain fulltextThe experimental observation of long-lived quantum coherences in the F...
The idea that excitonic (electronic) coherences are of fundamental importance to natural photosynthe...
Long-lived quantum coherence has been experimentally observed in the Fenna–Matthews–Olson (FMO) ligh...
A remarkable amount of theoretical research has been carried out to elucidate the physical origins o...
AbstractA remarkable amount of theoretical research has been carried out to elucidate the physical o...
The Fenna-Matthews-Olson (FMO) photosynthetic complex found in green sulfur bacteria has over the la...
The Light Harvesting 2 (LH2) complex is a vital part of the photosystem of purple bacteria. It is re...
Chlorosomes are supramolecular aggregates that contain thousands of bacteriochlorophyll molecules. T...
The idea that excitonic (electronic) coherences are of fundamental importance to natural photosynthe...
Energy transfer in the photosynthetic Fenna–Matthews–Olson (FMO) complex of green sulfur bacteria is...
In green-sulfur bacteria sunlight is absorbed by antenna structures termed chlorosomes, and transfer...
The experimental observation of long-lived quantum coherences in the Fenna-Matthews-Olson (FMO) ligh...
Item does not contain fulltextThe experimental observation of long-lived quantum coherences in the F...
The idea that excitonic (electronic) coherences are of fundamental importance to natural photosynthe...
Long-lived quantum coherence has been experimentally observed in the Fenna–Matthews–Olson (FMO) ligh...
A remarkable amount of theoretical research has been carried out to elucidate the physical origins o...
AbstractA remarkable amount of theoretical research has been carried out to elucidate the physical o...
The Fenna-Matthews-Olson (FMO) photosynthetic complex found in green sulfur bacteria has over the la...
The Light Harvesting 2 (LH2) complex is a vital part of the photosystem of purple bacteria. It is re...
Chlorosomes are supramolecular aggregates that contain thousands of bacteriochlorophyll molecules. T...
The idea that excitonic (electronic) coherences are of fundamental importance to natural photosynthe...
Energy transfer in the photosynthetic Fenna–Matthews–Olson (FMO) complex of green sulfur bacteria is...
In green-sulfur bacteria sunlight is absorbed by antenna structures termed chlorosomes, and transfer...