Using an approach to open quantum systems based on the effective non-Hermitian Hamiltonian, we fully describe transport properties for a paradigmatic model of a coherent quantum transmitter: a finite sequence of square potential barriers. We consider the general case of asymmetric external barriers and variable coupling strength to the environment. We demonstrate that transport properties are very sensitive to the degree of opening of the system and determine the parameters for maximum transmission at any given degree of asymmetry. Analyzing the complex eigenvalues of the non-Hermitian Hamiltonian, we show a double transition to a super-radiant regime where the transport properties and the structure of resonances undergo a strong change. We...
This thesis treats some problems in the field of quantum transport in nanostructures. In the first p...
We study the quantum transport through entropic barriers induced by hardwall constrictions of hyperb...
International audienceThe role of noise in the transport properties of quantum excitations is a topi...
Using an energy-independent non-Hermitian Hamiltonian approach to open systems, we fully describe tr...
We study, under very general conditions and in a variety of geometries, quantum enhancement of trans...
We investigate the validity of the non-Hermitian Hamiltonian approach in describing quantum transpor...
We study quantum enhancement of transport in open systems in the presence of disorder and dephasing....
We study quantum enhancement of transport in open systems in the presence of disorder and dephasing....
An open multibranch quantum circuit is considered from the viewpoint of coherent electron or wave tr...
An open multibranch quantum circuit is considered from the viewpoint of coherent electron or wave tr...
Unidirectional and robust transport is generally observed at the edge of two- or three-dimensional q...
Unidirectional and robust transport is generally observed at the edge of two- or three-dimensional q...
Unidirectional and robust transport is generally observed at the edge of two- or three-dimensional q...
Unidirectional and robust transport is generally observed at the edge of two- or three-dimensional q...
Quantum transport is strongly influenced by interference with phase relations that depend sen-sitive...
This thesis treats some problems in the field of quantum transport in nanostructures. In the first p...
We study the quantum transport through entropic barriers induced by hardwall constrictions of hyperb...
International audienceThe role of noise in the transport properties of quantum excitations is a topi...
Using an energy-independent non-Hermitian Hamiltonian approach to open systems, we fully describe tr...
We study, under very general conditions and in a variety of geometries, quantum enhancement of trans...
We investigate the validity of the non-Hermitian Hamiltonian approach in describing quantum transpor...
We study quantum enhancement of transport in open systems in the presence of disorder and dephasing....
We study quantum enhancement of transport in open systems in the presence of disorder and dephasing....
An open multibranch quantum circuit is considered from the viewpoint of coherent electron or wave tr...
An open multibranch quantum circuit is considered from the viewpoint of coherent electron or wave tr...
Unidirectional and robust transport is generally observed at the edge of two- or three-dimensional q...
Unidirectional and robust transport is generally observed at the edge of two- or three-dimensional q...
Unidirectional and robust transport is generally observed at the edge of two- or three-dimensional q...
Unidirectional and robust transport is generally observed at the edge of two- or three-dimensional q...
Quantum transport is strongly influenced by interference with phase relations that depend sen-sitive...
This thesis treats some problems in the field of quantum transport in nanostructures. In the first p...
We study the quantum transport through entropic barriers induced by hardwall constrictions of hyperb...
International audienceThe role of noise in the transport properties of quantum excitations is a topi...