We present a theoretical analysis of low-temperature quenching of one-dimensional Frenkel excitons that are localized by moderate on-site (diagonal) uncorrelated disorder. Exciton diffusion is considered as an incoherent hopping over localization segments and is probed by the exciton fluorescence quenching at point traps. The rate equation is used to calculate the temperature dependence of the exciton quenching. The activation temperature of the diffusion is found to be of the order of the width of the exciton absorption band. We demonstrate that the intra-segment scattering is extremely important for the exciton diffusion. We discuss also experimental data on the fast exciton-exciton annihilation in linear molecular aggregates at low tempe...
We calculate the temperature dependence of the fluorescence decay of a 1D localized Frenkel exciton ...
In molecular J-aggregates one often observes an increase of the fluorescence decay time when increas...
The ultrafast exciton dynamics in J-aggregates of a perylene bisimide dye is investigated for temper...
We study theoretically the diffusion of one-dimensional Frenkel excitons in J-aggregates at temperat...
We calculate the temperature dependence of the fluorescence Stokes shift and the fluorescence decay ...
We present results of numerical simulations of the kinetics of exciton–exciton annihilation of weakl...
Fluorescence spectra under various excitation and detection conditions are put forward to probe exci...
We report temperature-dependent steady-state and time-resolved fluorescence studies to probe the exc...
In molecular J-aggregates one often observes an increase of the fluorescence decay time when increas...
We model the optical dynamics in linear Frenkel exciton systems governed by scattering on static dis...
We compare localization properties of one-dimensional Frenkel excitons with Gaussian and Lorentzian ...
We calculate the temperature dependence of the fluorescence decay of a 1D localized Frenkel exciton ...
In molecular J-aggregates one often observes an increase of the fluorescence decay time when increas...
The ultrafast exciton dynamics in J-aggregates of a perylene bisimide dye is investigated for temper...
We study theoretically the diffusion of one-dimensional Frenkel excitons in J-aggregates at temperat...
We calculate the temperature dependence of the fluorescence Stokes shift and the fluorescence decay ...
We present results of numerical simulations of the kinetics of exciton–exciton annihilation of weakl...
Fluorescence spectra under various excitation and detection conditions are put forward to probe exci...
We report temperature-dependent steady-state and time-resolved fluorescence studies to probe the exc...
In molecular J-aggregates one often observes an increase of the fluorescence decay time when increas...
We model the optical dynamics in linear Frenkel exciton systems governed by scattering on static dis...
We compare localization properties of one-dimensional Frenkel excitons with Gaussian and Lorentzian ...
We calculate the temperature dependence of the fluorescence decay of a 1D localized Frenkel exciton ...
In molecular J-aggregates one often observes an increase of the fluorescence decay time when increas...
The ultrafast exciton dynamics in J-aggregates of a perylene bisimide dye is investigated for temper...