The two-particle coherent-potential approximation is used to calculate Frenkel-exciton group-velocity correlation functions for substitutionally disordered crystals. Most of the results can be described by a relaxation-time approximation, provided that k-dependent and complex relaxation times are allowed; however, some evidence for long-time tails, associated with the finite frequency range of the scattering potentials, is found. The probable accuracy of the approximation and its relationships with localization and kinetic theory are discussed, as is its relevance to experimental systems (triplet excitons in isotopic mixed naphthalene and anthracene crystals).Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/24699/1/0000118.pd
We develop a temperature-dependent theory for singlet exciton hopping transport in disordered semico...
We show that the excitonic coupling in molecular crystals undergoes a very large fluctuation at room...
The development of atom cooling and trapping techniques and the ability to load optical lattices or ...
This thesis considers several topics in the theory of excitation transport in disordered materials. ...
Thermal motions in molecular crystals cause substantial fluctuation of the excitonic coupling betwee...
The spectrally resolved time-evolution of free and trapped singlet excitons was obtained at liquid-h...
A microscopic transport theory is developed for stochastic and correlated hopping on ordered and ran...
The experimental data on triplet exciton transport in isotopically mixed crystals of naphthalene/per...
In this paper, we discuss the Frenkel excitons in disordered molecular crystals. Most of our results...
We develop a temperature-dependent theory for singlet exciton hopping transport in disordered semico...
We develop a temperature-dependent theory for singlet exciton hopping transport in disordered semico...
We develop a temperature-dependent theory for singlet exciton hopping transport in disordered semico...
The exciton transfer, via migration and trapping, in binary and ternary mixed crystals is formulated...
The problem of excitons in interaction with phonons in a molecular crystal has been reinvestigated a...
Experimental data is presented for singlet exciton transport in a ternary naphthalene system (C10H8/...
We develop a temperature-dependent theory for singlet exciton hopping transport in disordered semico...
We show that the excitonic coupling in molecular crystals undergoes a very large fluctuation at room...
The development of atom cooling and trapping techniques and the ability to load optical lattices or ...
This thesis considers several topics in the theory of excitation transport in disordered materials. ...
Thermal motions in molecular crystals cause substantial fluctuation of the excitonic coupling betwee...
The spectrally resolved time-evolution of free and trapped singlet excitons was obtained at liquid-h...
A microscopic transport theory is developed for stochastic and correlated hopping on ordered and ran...
The experimental data on triplet exciton transport in isotopically mixed crystals of naphthalene/per...
In this paper, we discuss the Frenkel excitons in disordered molecular crystals. Most of our results...
We develop a temperature-dependent theory for singlet exciton hopping transport in disordered semico...
We develop a temperature-dependent theory for singlet exciton hopping transport in disordered semico...
We develop a temperature-dependent theory for singlet exciton hopping transport in disordered semico...
The exciton transfer, via migration and trapping, in binary and ternary mixed crystals is formulated...
The problem of excitons in interaction with phonons in a molecular crystal has been reinvestigated a...
Experimental data is presented for singlet exciton transport in a ternary naphthalene system (C10H8/...
We develop a temperature-dependent theory for singlet exciton hopping transport in disordered semico...
We show that the excitonic coupling in molecular crystals undergoes a very large fluctuation at room...
The development of atom cooling and trapping techniques and the ability to load optical lattices or ...