We perform a theoretical study of the nonlinear optical response of an ultrathin film consisting of oriented linear aggregates. A single aggregate is described by a Frenkel exciton Hamiltonian with uncorrelated on-site disorder. The exciton wave functions and energies are found exactly by numerically diagonalizing the Hamiltonian. The principal restriction we impose is that only the optical transitions between the ground state and optically dominant states of the one-exciton manifold are considered, whereas transitions to other states, including those of higher exciton manifolds, are neglected. The optical dynamics of the system is treated within the framework of truncated optical Maxwell-Bloch equations, in which the electric polarization ...
Optical bistability is a quantum optical realization of a first order phase transition far from equi...
We show that the third-order optical response of disordered linear J-aggregates can be calculated by...
The properties of excitons in one‐dimensional molecular aggregates, dissolved at room temperature in...
We perform a theoretical study of the nonlinear optical response of an ultrathin film consisting of ...
We perform a theoretical study of the nonlinear optical response of an ultrathin film consisting of ...
We perform a theoretical study of the nonlinear optical response of an ultrathin film consisting of ...
We generalize our recent work on the optical bistability of thin films of molecular aggregates [ J. ...
We generalize our recent work on the optical bistability of thin films of molecular aggregates [J. A...
We generalize our recent work on the optical bistability of thin films of molecular aggregates by ac...
We address a two-level system in an environment interacting with an electromagnetic field in the dip...
A theoretical study of the resonance optical response of assemblies of oriented short (as compared t...
We study the properties of one-dimensional exciton systems in which the commonly made Heitler-London...
We study the dynamics of a single Frenkel exciton in a disordered molecular chain. The coherent-pote...
Excitonic interactions often significantly affect the optoelectronic properties of molecular materia...
Optical bistability is a quantum optical realization of a first order phase transition far from equi...
We show that the third-order optical response of disordered linear J-aggregates can be calculated by...
The properties of excitons in one‐dimensional molecular aggregates, dissolved at room temperature in...
We perform a theoretical study of the nonlinear optical response of an ultrathin film consisting of ...
We perform a theoretical study of the nonlinear optical response of an ultrathin film consisting of ...
We perform a theoretical study of the nonlinear optical response of an ultrathin film consisting of ...
We generalize our recent work on the optical bistability of thin films of molecular aggregates [ J. ...
We generalize our recent work on the optical bistability of thin films of molecular aggregates [J. A...
We generalize our recent work on the optical bistability of thin films of molecular aggregates by ac...
We address a two-level system in an environment interacting with an electromagnetic field in the dip...
A theoretical study of the resonance optical response of assemblies of oriented short (as compared t...
We study the properties of one-dimensional exciton systems in which the commonly made Heitler-London...
We study the dynamics of a single Frenkel exciton in a disordered molecular chain. The coherent-pote...
Excitonic interactions often significantly affect the optoelectronic properties of molecular materia...
Optical bistability is a quantum optical realization of a first order phase transition far from equi...
We show that the third-order optical response of disordered linear J-aggregates can be calculated by...
The properties of excitons in one‐dimensional molecular aggregates, dissolved at room temperature in...