The J−K transition of the bacteriorhodopsin photocycle was monitored by sub-picosecond time-resolved infrared spectroscopy. IR difference spectra in the region between 1670 and 1600 cm−1 were taken at 1.5 and 9 ps, respectively, after photoexcitation of BR570 at 540 nm. Spectral shifts of the bands at 1607 and 1661 cm−1 reflect the chromophoric conformational changes during the J to K transition. Kinetics, taken at 1640 and 1607 cm−1 show rise times determined by the dephasing times of the vibrational modes. The partial decrease of the bleach signal at 1640 cm−1 is interpreted as a recovery of the vibrationally cooled BR570 electronic ground state and provides a new method to measure the photocycle quantum yield. The development of the blea...
Recent infrared spectroscopic studies of the ultrafast responses of optically triggered changes in p...
Protein and cofactor vibrational dynamics associated with photoexcitation and electron transfer even...
International audienceThe primary energetic processes driving the functional proton pump of bacterio...
The photochemical reaction process of bacteriorhodopsin in the nanosecond time range (-120–860 ns) w...
The photoinduced reaction cycle of bacteriorhodopsin (BR) has been studied by means of a recently de...
Picosecond infrared spectroscopy is developed and used for the first time to study the dynamics of p...
ABSTRACT The infrared emission observed below 2000 cm1 upon exciting retinal in bacteriorhodopsin (b...
AbstractThe infrared emission observed below 2000cm−1 upon exciting retinal in bacteriorhodopsin (bR...
Time-resolved vibrational spectroscopy is an important tool for understanding biological processes a...
Bacteriorhodopsin, reconstituted with a sterically "locked" retinal chromophore, BR5.12, has frequen...
AbstractThe bacteriorhodopsin (bR) photocycle was followed by use of time-resolved Fourier-transform...
The photodynamics of bacteriorhodopsin were studied by transient absorption and gain measurements af...
The primary processes of the photochemical cycle of light-adapted bacteriorhodopsin (BR) were studie...
The determination of the intermediate state structures of the bacteriorhodopsin photocycle has lead ...
We have used the technique of Fourier transform infrared difference spectroscopy to study the photoc...
Recent infrared spectroscopic studies of the ultrafast responses of optically triggered changes in p...
Protein and cofactor vibrational dynamics associated with photoexcitation and electron transfer even...
International audienceThe primary energetic processes driving the functional proton pump of bacterio...
The photochemical reaction process of bacteriorhodopsin in the nanosecond time range (-120–860 ns) w...
The photoinduced reaction cycle of bacteriorhodopsin (BR) has been studied by means of a recently de...
Picosecond infrared spectroscopy is developed and used for the first time to study the dynamics of p...
ABSTRACT The infrared emission observed below 2000 cm1 upon exciting retinal in bacteriorhodopsin (b...
AbstractThe infrared emission observed below 2000cm−1 upon exciting retinal in bacteriorhodopsin (bR...
Time-resolved vibrational spectroscopy is an important tool for understanding biological processes a...
Bacteriorhodopsin, reconstituted with a sterically "locked" retinal chromophore, BR5.12, has frequen...
AbstractThe bacteriorhodopsin (bR) photocycle was followed by use of time-resolved Fourier-transform...
The photodynamics of bacteriorhodopsin were studied by transient absorption and gain measurements af...
The primary processes of the photochemical cycle of light-adapted bacteriorhodopsin (BR) were studie...
The determination of the intermediate state structures of the bacteriorhodopsin photocycle has lead ...
We have used the technique of Fourier transform infrared difference spectroscopy to study the photoc...
Recent infrared spectroscopic studies of the ultrafast responses of optically triggered changes in p...
Protein and cofactor vibrational dynamics associated with photoexcitation and electron transfer even...
International audienceThe primary energetic processes driving the functional proton pump of bacterio...