The migration of incoherent excitations in energetically disordered systems is studied theoretically using a self‐consistent diagrammatic approximation. Spatial diffusion and energy relaxation observables are related to the solutions of a nonlinear integral equation. Extensive numerical illustrations are given for two‐component and multicomponent systems. In the latter, spatial transport is found to be highly dispersive (nondiffusive) over an extremely wide range of timescales, in accordance with results from simulations and experiments. The dependence of spatial and spectral transport properties upon the spatial range and the energy dependence of the intermolecular hopping rates is examined. Several measures of energy relaxation, including...
The picosecond transient grating technique is used to directly measure the excited state energy tran...
High field charge transport in molecularly-doped polymers and amorphous molecular glasses occurs thr...
Photoexcited charge conduction in molecularly-doped polymers can be described in terms of a biased r...
This thesis considers several topics in the theory of excitation transport in disordered materials. ...
Excitonic transport in static-disordered one dimensional systems is studied in the presence of therm...
A microscopic transport theory is developed for stochastic and correlated hopping on ordered and ran...
We introduce energy-projected equations of motion to treat the diffusive transport of charge carrier...
We develop a temperature-dependent theory for singlet exciton hopping transport in disordered semico...
We study excitation transfer and migration in a one-dimensional lattice characterized by dynamic dis...
The effective-medium theory of transport in disordered systems, whose basis is the replacement of sp...
We study the spreading of initially localized excitations in one-dimensional disordered granular cry...
The two-particle coherent-potential approximation is used to calculate Frenkel-exciton group-velocit...
We study energy transport in disordered XXZ spin-1/2 chains driven to nonequilibrium configurations ...
Energy transport properties in heterogeneous materials have attracted scientific interest for more t...
We investigate finite-size scaling aspects of disorder reaction-diffusion processes in one dimension...
The picosecond transient grating technique is used to directly measure the excited state energy tran...
High field charge transport in molecularly-doped polymers and amorphous molecular glasses occurs thr...
Photoexcited charge conduction in molecularly-doped polymers can be described in terms of a biased r...
This thesis considers several topics in the theory of excitation transport in disordered materials. ...
Excitonic transport in static-disordered one dimensional systems is studied in the presence of therm...
A microscopic transport theory is developed for stochastic and correlated hopping on ordered and ran...
We introduce energy-projected equations of motion to treat the diffusive transport of charge carrier...
We develop a temperature-dependent theory for singlet exciton hopping transport in disordered semico...
We study excitation transfer and migration in a one-dimensional lattice characterized by dynamic dis...
The effective-medium theory of transport in disordered systems, whose basis is the replacement of sp...
We study the spreading of initially localized excitations in one-dimensional disordered granular cry...
The two-particle coherent-potential approximation is used to calculate Frenkel-exciton group-velocit...
We study energy transport in disordered XXZ spin-1/2 chains driven to nonequilibrium configurations ...
Energy transport properties in heterogeneous materials have attracted scientific interest for more t...
We investigate finite-size scaling aspects of disorder reaction-diffusion processes in one dimension...
The picosecond transient grating technique is used to directly measure the excited state energy tran...
High field charge transport in molecularly-doped polymers and amorphous molecular glasses occurs thr...
Photoexcited charge conduction in molecularly-doped polymers can be described in terms of a biased r...