Dispersed pump-dump-probe spectroscopy has the ability to characterize and identify the underlying ultrafast dynamical processes in complicated chemical and biological systems. This technique builds on traditional pump-probe techniques by exploring both ground- and excited-state dynamics and characterizing the connectivity between constituent transient states. We have used the dispersed pump-dump-probe technique to investigate the ground-state dynamics and competing excited-state processes in the excitation-induced ultrafast dynamics of thiomethyl p-coumaric acid, a model chromophore for the photoreceptor photoactive yellow protein. Our results demonstrate the parallel formation of two relaxation pathways (with multiple transient states) th...
ABSTRACT Photoactive yellow protein is the protein responsible for initiating the ‘‘blue-light visio...
AbstractPhotoactive yellow protein is the protein responsible for initiating the “blue-light vision”...
The ultrafast excited-state dynamics underlying the receptor state photorecovery is resolved in the ...
AbstractDispersed pump-dump-probe spectroscopy has the ability to characterize and identify the unde...
Pump-probe and pump-dump probe experiments have been performed on several isolated model chromophore...
Pump-probe and pump-dump probe experiments have been performed on several isolated model chromophore...
Pump-probe and pump-dump probe experiments have been performed on several isolated model chromophore...
AbstractWavelength- and time-resolved fluorescence experiments have been performed on the photoactiv...
ABSTRACT Wavelength- and time-resolved fluorescence experiments have been performed on the photoacti...
Wavelength- and time-resolved fluorescence experiments have been performed on the photoactive yellow...
AbstractWavelength- and time-resolved fluorescence experiments have been performed on the photoactiv...
We report a comparative study of the isomerization reaction in native and denatured photoactive yell...
The initial photoinduced dynamics of thiomethyl p-coumaric acid (TMpCA) in solution has been studied...
Proteorhodopsin (pR) is a membrane-embedded proton pump from the microbial rhodopsin family. Light a...
Photoactive yellow protein is the protein responsible for initiating the ``blue-light vision¿¿ of Ha...
ABSTRACT Photoactive yellow protein is the protein responsible for initiating the ‘‘blue-light visio...
AbstractPhotoactive yellow protein is the protein responsible for initiating the “blue-light vision”...
The ultrafast excited-state dynamics underlying the receptor state photorecovery is resolved in the ...
AbstractDispersed pump-dump-probe spectroscopy has the ability to characterize and identify the unde...
Pump-probe and pump-dump probe experiments have been performed on several isolated model chromophore...
Pump-probe and pump-dump probe experiments have been performed on several isolated model chromophore...
Pump-probe and pump-dump probe experiments have been performed on several isolated model chromophore...
AbstractWavelength- and time-resolved fluorescence experiments have been performed on the photoactiv...
ABSTRACT Wavelength- and time-resolved fluorescence experiments have been performed on the photoacti...
Wavelength- and time-resolved fluorescence experiments have been performed on the photoactive yellow...
AbstractWavelength- and time-resolved fluorescence experiments have been performed on the photoactiv...
We report a comparative study of the isomerization reaction in native and denatured photoactive yell...
The initial photoinduced dynamics of thiomethyl p-coumaric acid (TMpCA) in solution has been studied...
Proteorhodopsin (pR) is a membrane-embedded proton pump from the microbial rhodopsin family. Light a...
Photoactive yellow protein is the protein responsible for initiating the ``blue-light vision¿¿ of Ha...
ABSTRACT Photoactive yellow protein is the protein responsible for initiating the ‘‘blue-light visio...
AbstractPhotoactive yellow protein is the protein responsible for initiating the “blue-light vision”...
The ultrafast excited-state dynamics underlying the receptor state photorecovery is resolved in the ...