Dark states are stationary states of a dissipative, Lindblad-type time evolution with zero von Neumann entropy, therefore representing examples of pure steady states. Nonequilibrium dynamics featuring a dark state recently gained a lot of attraction since their implementation in the context of driven-open quantum systems represents a viable possibility to engineer unique, pure states. Inspired by recent experimental progress with ultracold Rydberg ensembles, we analyze a driven many-body spin system, which displays a mean-field bistability between a dark steady state and a mixed steady state. As a function of the driving strength one observes a discontinuous phase transition that connects the zero entropy (dark) state with a finite entropy ...
We show that short-range correlations have a dramatic impact on the steady-state phase diagram of qu...
In this Thesis, I will report on the experiments performed during my Ph.D. in Pisa. The aim of the t...
Understanding the nonequilibrium behavior of quantum systems is a major goal of contemporary physics...
Dark states are stationary states of a dissipative, Lindblad-type time evolution with zero von Neuma...
Dark states are eigenstates or steady states of a system that are decoupled from the radiation. Thei...
Understanding and probing phase transitions in nonequilibrium systems is an ongoing challenge in phy...
This thesis presents several experiments investigating the regimes of behaviour of a proto-typical o...
We introduce the concept of dark space phase transition, which may occur in open many-body quantum s...
We investigate the time evolution of an open quantum system described by a Lindblad master equation ...
We study the non-equilibrium dynamics of driven spin lattices in the presence of decoherence caused ...
We investigate the nonequilibrium dynamics of a driven-dissipative spin ensemble with competing powe...
Coupling a system to a nonthermal environment can profoundly affect the phase diagram of the closed ...
Quantum theory provides an extensive framework for the description of the equilibrium properties of ...
We discuss an open driven-dissipative many-body system, in which the competition of unitary Hamilton...
We show that short-range correlations have a dramatic impact on the steady-state phase diagram of qu...
In this Thesis, I will report on the experiments performed during my Ph.D. in Pisa. The aim of the t...
Understanding the nonequilibrium behavior of quantum systems is a major goal of contemporary physics...
Dark states are stationary states of a dissipative, Lindblad-type time evolution with zero von Neuma...
Dark states are eigenstates or steady states of a system that are decoupled from the radiation. Thei...
Understanding and probing phase transitions in nonequilibrium systems is an ongoing challenge in phy...
This thesis presents several experiments investigating the regimes of behaviour of a proto-typical o...
We introduce the concept of dark space phase transition, which may occur in open many-body quantum s...
We investigate the time evolution of an open quantum system described by a Lindblad master equation ...
We study the non-equilibrium dynamics of driven spin lattices in the presence of decoherence caused ...
We investigate the nonequilibrium dynamics of a driven-dissipative spin ensemble with competing powe...
Coupling a system to a nonthermal environment can profoundly affect the phase diagram of the closed ...
Quantum theory provides an extensive framework for the description of the equilibrium properties of ...
We discuss an open driven-dissipative many-body system, in which the competition of unitary Hamilton...
We show that short-range correlations have a dramatic impact on the steady-state phase diagram of qu...
In this Thesis, I will report on the experiments performed during my Ph.D. in Pisa. The aim of the t...
Understanding the nonequilibrium behavior of quantum systems is a major goal of contemporary physics...