A model is presented that connects the underlying classical thermal transport coefficients to the experimentally determined vibrational temperature of a photoexcited chromophore embedded in a protein matrix that is surrounded by water. Both photo-stationary state heating (e.g., within a 10-ns laser pulse) and transient cooling (e.g., after termination of the laser pulse) are treated. Because only a few thermal transport parameters can be experimentally determined, this simple model provides a practical and efficient method for describing the temperatures of the chromophore, protein, and solvent as functions of time and position. We expect that such a model will be useful in interfacing experimental observations with more elaborate molecular...
We have studied ultrafast dynamics in two systems: heme proteins and small de novo peptides. Heme re...
In a combined experimental–theoretical study, we investigated the transport of vibrational energy fr...
Studies of protein folding are necessary in order to understand how a one dimensional chain of amino...
A model is presented that connects the underlying classical thermal transport coefficients to the ex...
The heating of a chromophore due to internal conversion and its cooling down due to energy dissipati...
The responses of proteins to different perturbations are simulated by molecular dynamics simulations...
International audienceThe heating of a chromophore due to internal conversion and its cooling down d...
International audienceThe heating of a chromophore due to internal conversion and its cooling down d...
The responses of proteins to different perturbations are simulated by molecular dynamics simulations...
This is the final report of a one-year, Laboratory Directed Research and Development (LDRD) project ...
ABSTRACT Ultrafast laser radiation heat transfer in biological tissues is governed by time-dependent...
The bio-energy released by the hydrolysis of adenosine triphosphate, which relate to plenty of life ...
Energy transport in a short helical peptide in chloroform solution is studied by time-resolved femto...
AbstractSingle-molecule fluorescence spectroscopy is a powerful technique that makes it possible to ...
Energy transport in a short helical peptide in chloroform solution is studied by time-resolved femto...
We have studied ultrafast dynamics in two systems: heme proteins and small de novo peptides. Heme re...
In a combined experimental–theoretical study, we investigated the transport of vibrational energy fr...
Studies of protein folding are necessary in order to understand how a one dimensional chain of amino...
A model is presented that connects the underlying classical thermal transport coefficients to the ex...
The heating of a chromophore due to internal conversion and its cooling down due to energy dissipati...
The responses of proteins to different perturbations are simulated by molecular dynamics simulations...
International audienceThe heating of a chromophore due to internal conversion and its cooling down d...
International audienceThe heating of a chromophore due to internal conversion and its cooling down d...
The responses of proteins to different perturbations are simulated by molecular dynamics simulations...
This is the final report of a one-year, Laboratory Directed Research and Development (LDRD) project ...
ABSTRACT Ultrafast laser radiation heat transfer in biological tissues is governed by time-dependent...
The bio-energy released by the hydrolysis of adenosine triphosphate, which relate to plenty of life ...
Energy transport in a short helical peptide in chloroform solution is studied by time-resolved femto...
AbstractSingle-molecule fluorescence spectroscopy is a powerful technique that makes it possible to ...
Energy transport in a short helical peptide in chloroform solution is studied by time-resolved femto...
We have studied ultrafast dynamics in two systems: heme proteins and small de novo peptides. Heme re...
In a combined experimental–theoretical study, we investigated the transport of vibrational energy fr...
Studies of protein folding are necessary in order to understand how a one dimensional chain of amino...