We study theoretically the diffusion of one-dimensional Frenkel excitons in J-aggregates at temperatures that are smaller or on the order of the J-bandwidth. We consider an aggregate as an open linear chain with uncorrelated on-site (diagonal) disorder that localizes the exciton at chain segments of size smaller than the full chain length. The exciton diffusion over the localization segments is considered as incoherent hopping. The diffusion is probed by the exciton fluorescence quenching, which is due to the presence of point traps in the aggregate. The rate equation for populations of the localized exciton states is used to describe the exciton diffusion and trapping. We show that there exist two regimes of the exciton diffusion at low te...
We present results of numerical simulations of the kinetics of exciton–exciton annihilation of weakl...
Using a model of Frenkel excitons coupled to a bath of acoustic phonons in the host medium, we study...
The ultrafast exciton dynamics in J-aggregates of a perylene bisimide dye is investigated for temper...
We present a theoretical analysis of low-temperature quenching of one-dimensional Frenkel excitons t...
We calculate the temperature dependence of the fluorescence Stokes shift and the fluorescence decay ...
Exciton diffusion plays an important role in many opto-electronic processes and phenomena. Understan...
Fluorescence spectra under various excitation and detection conditions are put forward to probe exci...
We calculate the temperature dependence of the fluorescence decay of a 1D localized Frenkel exciton ...
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 report temperature-dependent steady-state and time-resolved fluorescence studies to probe the exc...
We report temperature-dependent steady-state and time-resolved fluorescence studies to probe the exc...
We compare localization properties of one-dimensional Frenkel excitons with Gaussian and Lorentzian ...
We present results of numerical simulations of the kinetics of exciton–exciton annihilation of weakl...
Using a model of Frenkel excitons coupled to a bath of acoustic phonons in the host medium, we study...
The ultrafast exciton dynamics in J-aggregates of a perylene bisimide dye is investigated for temper...
We present a theoretical analysis of low-temperature quenching of one-dimensional Frenkel excitons t...
We calculate the temperature dependence of the fluorescence Stokes shift and the fluorescence decay ...
Exciton diffusion plays an important role in many opto-electronic processes and phenomena. Understan...
Fluorescence spectra under various excitation and detection conditions are put forward to probe exci...
We calculate the temperature dependence of the fluorescence decay of a 1D localized Frenkel exciton ...
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 report temperature-dependent steady-state and time-resolved fluorescence studies to probe the exc...
We report temperature-dependent steady-state and time-resolved fluorescence studies to probe the exc...
We compare localization properties of one-dimensional Frenkel excitons with Gaussian and Lorentzian ...
We present results of numerical simulations of the kinetics of exciton–exciton annihilation of weakl...
Using a model of Frenkel excitons coupled to a bath of acoustic phonons in the host medium, we study...
The ultrafast exciton dynamics in J-aggregates of a perylene bisimide dye is investigated for temper...