In green-sulfur bacteria sunlight is absorbed by antenna structures termed chlorosomes, and transferred to the RC via the Fenna-Matthews-Olson (FMO) complex. FMO consists of three monomers arranged in C3 symmetry where each monomer accommodates eight Bacteriochlorophyll a (BChl a) molecules. It was the first pigment-protein complex for which the structure has been determined with high resolution and since then this complex has been the subject of numerous studies both experimentally and theoretically. Here we report about fluorescence-excitation spectroscopy as well as emission spectroscopy from individual FMO complexes at low temperatures. The individual FMO complexes are subjected to very fast spectral fluctuations smearing out any possib...
Doctor of PhilosophyChemistryRyszard J. JankowiakThe structure-function relationships of natural pig...
Using single-molecule detection techniques, fluorescence-excitation spectra from the B800 absorption...
A theory of excitation energy transfer within the chlorosomal antennae of green bacteria has been de...
In green-sulfur bacteria sunlight is absorbed by antenna structures termed chlorosomes, and transfer...
AbstractThe Fenna–Matthews–Olson protein (FMO) binds seven or eight bacteriochlorophyll a (BChl a) m...
We review the optical properties of the FMO complex as found by spectroscopic studies of the Qy band...
The Fenna-Matthews-Olson: FMO) bacteriochlorophyll a protein has served as a model antenna system fo...
Theoretical simulations and ultrafast pump-probe laser spectroscopy experiments were used to study p...
We present a theoretical study of excitation dynamics in the chlorosome antenna complex of green pho...
The Fenna-Matthews-Olson (FMO) photosynthetic complex found in green sulfur bacteria has over the la...
AbstractWe have studied energy transfer in chlorosomes of Chlorobium limicola UdG6040 containing a m...
AbstractIn this work we present and discuss the single-molecule fluorescence spectra of a variety of...
Low-temperature single-molecule spectroscopic techniques were applied to a light-harvesting pigment-...
In this Letter we present the first observation of the fluorescence-excitation spectra of individual...
Long-lived quantum coherence has been experimentally observed in the Fenna–Matthews–Olson (FMO) ligh...
Doctor of PhilosophyChemistryRyszard J. JankowiakThe structure-function relationships of natural pig...
Using single-molecule detection techniques, fluorescence-excitation spectra from the B800 absorption...
A theory of excitation energy transfer within the chlorosomal antennae of green bacteria has been de...
In green-sulfur bacteria sunlight is absorbed by antenna structures termed chlorosomes, and transfer...
AbstractThe Fenna–Matthews–Olson protein (FMO) binds seven or eight bacteriochlorophyll a (BChl a) m...
We review the optical properties of the FMO complex as found by spectroscopic studies of the Qy band...
The Fenna-Matthews-Olson: FMO) bacteriochlorophyll a protein has served as a model antenna system fo...
Theoretical simulations and ultrafast pump-probe laser spectroscopy experiments were used to study p...
We present a theoretical study of excitation dynamics in the chlorosome antenna complex of green pho...
The Fenna-Matthews-Olson (FMO) photosynthetic complex found in green sulfur bacteria has over the la...
AbstractWe have studied energy transfer in chlorosomes of Chlorobium limicola UdG6040 containing a m...
AbstractIn this work we present and discuss the single-molecule fluorescence spectra of a variety of...
Low-temperature single-molecule spectroscopic techniques were applied to a light-harvesting pigment-...
In this Letter we present the first observation of the fluorescence-excitation spectra of individual...
Long-lived quantum coherence has been experimentally observed in the Fenna–Matthews–Olson (FMO) ligh...
Doctor of PhilosophyChemistryRyszard J. JankowiakThe structure-function relationships of natural pig...
Using single-molecule detection techniques, fluorescence-excitation spectra from the B800 absorption...
A theory of excitation energy transfer within the chlorosomal antennae of green bacteria has been de...