We present theoretical analyses of two different aspects of the time dependence of the fluorescence Stokes shift in polar liquids. We show that a small deviation from the Debye form for the dielectric relaxation of the solvent can strongly influence the time evolution of the Stokes shift. Using the Davidson-Cole form for dielectric response we find a stretched exponential time dependence as observed in recent experiments. We also show that the shape of the fluorescing molecule can influence the dynamics of solvation
The time-dependent solvation correlation function (the Stokes shift response function), which descri...
Time-resolved fluorescence spectroscopy is used increasingly to probe molecular motions at the aqueo...
The time-dependent fluorescence frequency shift of protein-attached probes has a much slower decay t...
We present theoretical analyses of two different aspects of the time dependence of the fluorescence ...
We present a theory for the time evolution of the Stokes shift of a polar molecule in a polar solven...
We present a theory for the time evolution of the Stokes shift of a polar molecule in a polar solven...
The relationship between the energy gap time correlation function (EGTCF), measured in optical lines...
The relationship between the energy gap time correlation function (EGTCF), measured in optical lines...
The relationship between the energy gap time correlation function (EGTCF), measured in optical lines...
The relationship between the energy gap time correlation function (EGTCF), measured in optical lines...
We present here a study of the time dependent Stokes shift, performing quantum-mechanical calculatio...
A method is described for incorporating the vibronic transitions of a solute molecule in the calcula...
The dynamics of solvation of newly created dipoles is discussed. Developments of standard continuum ...
The time-dependent fluorescence frequency shift of protein-attached probes has a much slower decay t...
The time-dependent solvation correlation function (the Stokes shift response function), which descri...
The time-dependent solvation correlation function (the Stokes shift response function), which descri...
Time-resolved fluorescence spectroscopy is used increasingly to probe molecular motions at the aqueo...
The time-dependent fluorescence frequency shift of protein-attached probes has a much slower decay t...
We present theoretical analyses of two different aspects of the time dependence of the fluorescence ...
We present a theory for the time evolution of the Stokes shift of a polar molecule in a polar solven...
We present a theory for the time evolution of the Stokes shift of a polar molecule in a polar solven...
The relationship between the energy gap time correlation function (EGTCF), measured in optical lines...
The relationship between the energy gap time correlation function (EGTCF), measured in optical lines...
The relationship between the energy gap time correlation function (EGTCF), measured in optical lines...
The relationship between the energy gap time correlation function (EGTCF), measured in optical lines...
We present here a study of the time dependent Stokes shift, performing quantum-mechanical calculatio...
A method is described for incorporating the vibronic transitions of a solute molecule in the calcula...
The dynamics of solvation of newly created dipoles is discussed. Developments of standard continuum ...
The time-dependent fluorescence frequency shift of protein-attached probes has a much slower decay t...
The time-dependent solvation correlation function (the Stokes shift response function), which descri...
The time-dependent solvation correlation function (the Stokes shift response function), which descri...
Time-resolved fluorescence spectroscopy is used increasingly to probe molecular motions at the aqueo...
The time-dependent fluorescence frequency shift of protein-attached probes has a much slower decay t...