We study the quantum dynamics of many-body systems, in the presence of dissipation due to the interaction with the environment, under Kibble-Zurek (KZ) protocols in which one Hamiltonian parameter is slowly, and linearly in time, driven across the critical value of a zero-temperature quantum transition. In particular we address whether, and under which conditions, open quantum systems can develop a universal dynamic scaling regime similar to that emerging in closed systems. We focus on a class of dissipative mechanisms the dynamics of which can be reliably described through a Lindblad master equation governing the time evolution of the system's density matrix. We argue that a dynamic scaling limit exists even in the presence of dissipation,...
We give an overview of the scaling of density of quasi-particles and excess energy (heat) for nearly...
We explore the robustness of universal dynamical scaling behavior in a quantum system near criticali...
This thesis studies non-equilibrium open quantum systems where the dissipation is crucial to the ach...
We study the quantum dynamics of many-body systems, in the presence of dissipation due to the intera...
We study the critical behavior of the nonequilibrium dynamics and of the steady states emerging from...
We investigate the competition of coherent and dissipative dynamics in many-body systems at continuo...
The Kibble-Zurek mechanism captures universality when a system is driven through a continuous phase ...
The many-body physics at quantum phase transitions shows a subtle interplay between quantum and ther...
Near a critical point, the equilibrium relaxation time of a system diverges and any change of contro...
The Kibble-Zurek mechanism constitutes one of the most fascinating and universal phenomena in the ph...
We investigate the effects of dissipation on the quantum dynamics of many-body systems at quantum tr...
We investigate the quantum dynamics of many-body systems subject to local (i.e., restricted to a lim...
We study the effects of dissipative boundaries in many-body systems at continuous quantum transition...
We study the effects of dissipative boundaries in many-body systems at continuous quantum transition...
Adiabatic theorem states that for sufficiently slow variations of a parameter, a quantum system star...
We give an overview of the scaling of density of quasi-particles and excess energy (heat) for nearly...
We explore the robustness of universal dynamical scaling behavior in a quantum system near criticali...
This thesis studies non-equilibrium open quantum systems where the dissipation is crucial to the ach...
We study the quantum dynamics of many-body systems, in the presence of dissipation due to the intera...
We study the critical behavior of the nonequilibrium dynamics and of the steady states emerging from...
We investigate the competition of coherent and dissipative dynamics in many-body systems at continuo...
The Kibble-Zurek mechanism captures universality when a system is driven through a continuous phase ...
The many-body physics at quantum phase transitions shows a subtle interplay between quantum and ther...
Near a critical point, the equilibrium relaxation time of a system diverges and any change of contro...
The Kibble-Zurek mechanism constitutes one of the most fascinating and universal phenomena in the ph...
We investigate the effects of dissipation on the quantum dynamics of many-body systems at quantum tr...
We investigate the quantum dynamics of many-body systems subject to local (i.e., restricted to a lim...
We study the effects of dissipative boundaries in many-body systems at continuous quantum transition...
We study the effects of dissipative boundaries in many-body systems at continuous quantum transition...
Adiabatic theorem states that for sufficiently slow variations of a parameter, a quantum system star...
We give an overview of the scaling of density of quasi-particles and excess energy (heat) for nearly...
We explore the robustness of universal dynamical scaling behavior in a quantum system near criticali...
This thesis studies non-equilibrium open quantum systems where the dissipation is crucial to the ach...