We present a formalism to study many-particle quantum transport across a lattice locally connected to two finite, nonstationary (bosonic or fermionic) reservoirs, both of which are in a thermal state. We show that, for conserved total particle number, a system of nonlinear quantum-classical master equations describes the concurrent many-particle time evolution on the lattice and in the reservoirs. The finiteness of the reservoirs makes a macroscopic current emerge, which decreases exponentially in time and asymptotically drives the many-particle configuration into an equilibrium state where the particle flow ceases. We analytically derive the timescale of this equilibration process, and, furthermore, investigate the imprint of many-particle...
This work investigates classical interacting particle systems for which the stochastic time evolutio...
We consider a discrete-time non-Hamiltonian dynamics of a quantum system consisting of a finite samp...
A large number of multifaceted quantum transport processes in molecular systems and physical nanosys...
We review one of the most versatile theoretical approaches to the study of time-dependent correlated...
We review one of the most versatile theoretical approaches to the study of time-dependent correlated...
We review one of the most versatile theoretical approaches to the study of time-dependent correlated...
We study particle current in a recently proposed model for coherent quantum transport. In this model...
We study a model of nonequilibrium quantum transport of particles and energy in a many-body system c...
Recent experimental advances on ultracold atomic gases and trapped ions have made it possible to sim...
Based on the works [R1] - [R10], this thesis tackles various aspects of the dynamics of interacting ...
In this thesis, we study geometry-based non-equilibrium steady-state transport phenomena theoretical...
In the last two decades, the access of experimental, tunable systems, described by simple models off...
Understanding the general principles underlying strongly interacting quantum states out of equilibri...
The particle transport through a chain of quantum dots coupled to two bosonic reservoirs is studied....
We review one of the most versatile theoretical approaches to the study of time-dependent correlated...
This work investigates classical interacting particle systems for which the stochastic time evolutio...
We consider a discrete-time non-Hamiltonian dynamics of a quantum system consisting of a finite samp...
A large number of multifaceted quantum transport processes in molecular systems and physical nanosys...
We review one of the most versatile theoretical approaches to the study of time-dependent correlated...
We review one of the most versatile theoretical approaches to the study of time-dependent correlated...
We review one of the most versatile theoretical approaches to the study of time-dependent correlated...
We study particle current in a recently proposed model for coherent quantum transport. In this model...
We study a model of nonequilibrium quantum transport of particles and energy in a many-body system c...
Recent experimental advances on ultracold atomic gases and trapped ions have made it possible to sim...
Based on the works [R1] - [R10], this thesis tackles various aspects of the dynamics of interacting ...
In this thesis, we study geometry-based non-equilibrium steady-state transport phenomena theoretical...
In the last two decades, the access of experimental, tunable systems, described by simple models off...
Understanding the general principles underlying strongly interacting quantum states out of equilibri...
The particle transport through a chain of quantum dots coupled to two bosonic reservoirs is studied....
We review one of the most versatile theoretical approaches to the study of time-dependent correlated...
This work investigates classical interacting particle systems for which the stochastic time evolutio...
We consider a discrete-time non-Hamiltonian dynamics of a quantum system consisting of a finite samp...
A large number of multifaceted quantum transport processes in molecular systems and physical nanosys...