We study quantum enhancement of transport in open systems in the presence of disorder and dephasing. Quantum coherence effects may significantly enhance transport in open systems even in the semiclassical regime (where the decoherence rate is greater than the intersite hopping amplitude), as long as the disorder is sufficiently strong. When the strengths of disorder and dephasing are fixed, there is an optimal opening strength at which the coherent transport enhancement is optimized. Analytic results are obtained in two simple paradigmatic tight-binding models of large systems: the linear chain and the fully connected network. The physical behavior is also reflected in the Fenna-Matthews-Olson (FMO) photosynthetic complex, which may be view...
We studied transport properties of a disordered tight-binding model (XX spin chain) in the presence ...
Technologies which convert light into energy, and vice versa, rely on complex, microscopic transport...
Transport phenomena on a quantum scale appear in a variety of systems, ranging from photosynthetic c...
We study quantum enhancement of transport in open systems in the presence of disorder and dephasing....
We study, under very general conditions and in a variety of geometries, quantum enhancement of trans...
Transport phenomena at the nanoscale are of interest due to the presence of both quantum and classic...
We discuss the possibly constructive role of disorder for the optimization of exciton transport in t...
Quantum transport is strongly influenced by interference with phase relations that depend sen-sitive...
Abstract. We examine the excitation transport across quantum networks that are continuously driven b...
Excitonic transport in static-disordered one dimensional systems is studied in the presence of therm...
Using an approach to open quantum systems based on the effective non-Hermitian Hamiltonian, we fully...
Transport phenomena on a quantum scale appear in a variety of systems, ranging from photosynthetic c...
A key insight from recent studies is that noise, such as dephasing, can improve the efficiency of qu...
Technologies which convert light into energy, and vice versa, rely on complex, microscopic transport...
Assessing the role of interference in natural and artificial quantum dynamical processes is a crucia...
We studied transport properties of a disordered tight-binding model (XX spin chain) in the presence ...
Technologies which convert light into energy, and vice versa, rely on complex, microscopic transport...
Transport phenomena on a quantum scale appear in a variety of systems, ranging from photosynthetic c...
We study quantum enhancement of transport in open systems in the presence of disorder and dephasing....
We study, under very general conditions and in a variety of geometries, quantum enhancement of trans...
Transport phenomena at the nanoscale are of interest due to the presence of both quantum and classic...
We discuss the possibly constructive role of disorder for the optimization of exciton transport in t...
Quantum transport is strongly influenced by interference with phase relations that depend sen-sitive...
Abstract. We examine the excitation transport across quantum networks that are continuously driven b...
Excitonic transport in static-disordered one dimensional systems is studied in the presence of therm...
Using an approach to open quantum systems based on the effective non-Hermitian Hamiltonian, we fully...
Transport phenomena on a quantum scale appear in a variety of systems, ranging from photosynthetic c...
A key insight from recent studies is that noise, such as dephasing, can improve the efficiency of qu...
Technologies which convert light into energy, and vice versa, rely on complex, microscopic transport...
Assessing the role of interference in natural and artificial quantum dynamical processes is a crucia...
We studied transport properties of a disordered tight-binding model (XX spin chain) in the presence ...
Technologies which convert light into energy, and vice versa, rely on complex, microscopic transport...
Transport phenomena on a quantum scale appear in a variety of systems, ranging from photosynthetic c...