The excited state decay kinetics of chromatophores of the purple photosynthetic bacterium Rhodospirillum rubrum have been recorded at 77 K using picosecond absorption difference spectroscopy under strict annihilation free conditions. The kinetics are shown to be strongly detection wavelength dependent. A simultaneous kinetic modeling of these experiments together with earlier fluorescence kinetics by numerical integration of the appropriate master equation is performed. This model, which accounts for the spectral inhomogeneity of the core light-harvesting antenna of photosynthetic purple bacteria, reveals three qualitatively distinct stages of excitation transfer with different time scales. At first a fast transfer to a local energy minimum...
AbstractEnergy transfers within the B808–866 BChl a antenna in chlorosome-membrane complexes from th...
Excitation energy transfer in the light-harvesting antenna of Rhodospirillum rubrum was studied at r...
AbstractThe main infrared absorption band of the antenna of the purple bacterium Rps. uiridis is inv...
The excited state decay kinetics of chromatophores of the purple photosynthetic bacterium Rhodospiri...
Energy transfer within the peripheral light-harvesting antenna of the purple bacteria Rhodobacter sp...
Using low intensity picosecond absorption spectroscopy with independently tunable excitation and pro...
AbstractWe have studied the energy-transfer dynamics in chromatophores of Rhodobacter sphaeroides an...
The picosecond time-domain incoherent singlet excitation transfer and trapping kinetics in core ante...
Steady state and time-resolved absorption and fluorescence spectroscopy have been used to investigat...
AbstractThe influence of exciton interactions and pseudolocal librational modes on the relaxation of...
Using low intensity picosecond absorption spectroscopy with independently tunable excitation and pro...
AbstractAnomalously high values of photoinduced absorption changes were revealed in the antenna of p...
In this paper, we analyze the process of excitation energy migration and trapping by reaction centre...
AbstractEnergy transfer in the antenna of the purple non-sulfur bacterium Rhodopseudomonas cryptolac...
AbstractWe have studied the energy-transfer dynamics in chromatophores of Rhodobacter sphaeroides an...
AbstractEnergy transfers within the B808–866 BChl a antenna in chlorosome-membrane complexes from th...
Excitation energy transfer in the light-harvesting antenna of Rhodospirillum rubrum was studied at r...
AbstractThe main infrared absorption band of the antenna of the purple bacterium Rps. uiridis is inv...
The excited state decay kinetics of chromatophores of the purple photosynthetic bacterium Rhodospiri...
Energy transfer within the peripheral light-harvesting antenna of the purple bacteria Rhodobacter sp...
Using low intensity picosecond absorption spectroscopy with independently tunable excitation and pro...
AbstractWe have studied the energy-transfer dynamics in chromatophores of Rhodobacter sphaeroides an...
The picosecond time-domain incoherent singlet excitation transfer and trapping kinetics in core ante...
Steady state and time-resolved absorption and fluorescence spectroscopy have been used to investigat...
AbstractThe influence of exciton interactions and pseudolocal librational modes on the relaxation of...
Using low intensity picosecond absorption spectroscopy with independently tunable excitation and pro...
AbstractAnomalously high values of photoinduced absorption changes were revealed in the antenna of p...
In this paper, we analyze the process of excitation energy migration and trapping by reaction centre...
AbstractEnergy transfer in the antenna of the purple non-sulfur bacterium Rhodopseudomonas cryptolac...
AbstractWe have studied the energy-transfer dynamics in chromatophores of Rhodobacter sphaeroides an...
AbstractEnergy transfers within the B808–866 BChl a antenna in chlorosome-membrane complexes from th...
Excitation energy transfer in the light-harvesting antenna of Rhodospirillum rubrum was studied at r...
AbstractThe main infrared absorption band of the antenna of the purple bacterium Rps. uiridis is inv...