We model the optical dynamics in linear Frenkel exciton systems governed by scattering on static disorder and lattice vibrations and calculate the temperature dependent fluorescence spectrum and lifetime. The fluorescence Stokes shift shows a nonmonotonic behavior with temperature, which derives from the interplay of the local band-edge level structure and thermal equilibration. The model yields excellent fits to experiments performed on linear dye aggregates.</p
Fluorescence spectra under various excitation and detection conditions are put forward to probe exci...
Fluorescence spectra under various excitation and detection conditions are put forward to probe exci...
Fluorescence spectra under various excitation and detection conditions are put forward to probe exci...
We model the optical dynamics in linear Frenkel exciton systems governed by scattering on static dis...
We model the optical dynamics in linear Frenkel exciton systems governed by scattering on static dis...
We model the optical dynamics in linear Frenkel exciton systems governed by scattering on static dis...
We model the optical dynamics in linear Frenkel exciton systems governed by scattering on static dis...
We calculate the temperature dependence of the fluorescence Stokes shift and the fluorescence decay ...
We model the optical dynamics in linear Frenkel exciton systems governed by scattering on static dis...
We calculate the temperature dependence of the fluorescence Stokes shift and the fluorescence decay ...
We calculate the temperature dependence of the fluorescence Stokes shift and the fluorescence decay ...
We calculate the temperature dependence of the fluorescence Stokes shift and the fluorescence decay ...
We calculate the temperature dependence of the fluorescence Stokes shift and the fluorescence decay ...
We calculate the temperature dependence of the fluorescence Stokes shift and the fluorescence decay ...
Fluorescence spectra under various excitation and detection conditions are put forward to probe exci...
Fluorescence spectra under various excitation and detection conditions are put forward to probe exci...
Fluorescence spectra under various excitation and detection conditions are put forward to probe exci...
Fluorescence spectra under various excitation and detection conditions are put forward to probe exci...
We model the optical dynamics in linear Frenkel exciton systems governed by scattering on static dis...
We model the optical dynamics in linear Frenkel exciton systems governed by scattering on static dis...
We model the optical dynamics in linear Frenkel exciton systems governed by scattering on static dis...
We model the optical dynamics in linear Frenkel exciton systems governed by scattering on static dis...
We calculate the temperature dependence of the fluorescence Stokes shift and the fluorescence decay ...
We model the optical dynamics in linear Frenkel exciton systems governed by scattering on static dis...
We calculate the temperature dependence of the fluorescence Stokes shift and the fluorescence decay ...
We calculate the temperature dependence of the fluorescence Stokes shift and the fluorescence decay ...
We calculate the temperature dependence of the fluorescence Stokes shift and the fluorescence decay ...
We calculate the temperature dependence of the fluorescence Stokes shift and the fluorescence decay ...
We calculate the temperature dependence of the fluorescence Stokes shift and the fluorescence decay ...
Fluorescence spectra under various excitation and detection conditions are put forward to probe exci...
Fluorescence spectra under various excitation and detection conditions are put forward to probe exci...
Fluorescence spectra under various excitation and detection conditions are put forward to probe exci...
Fluorescence spectra under various excitation and detection conditions are put forward to probe exci...