We investigate the nonequilibrium dynamics of a driven-dissipative spin ensemble with competing power-law interactions. We demonstrate that dynamical phase transitions as well as bistabilities can emerge for asymptotic van derWaals interactions, but critically rely on the presence of a slower decaying potential core. Upon introducing random particle motion, we show that a finite gas temperature can drive a phase transition with regards to the spin degree of freedom and eventually leads to mean-field behavior in the high-temperature limit. Our work reconciles contrasting observations of recent experiments with Rydberg atoms in the cold-gas and hot-vapor domain, and introduces an efficient theoretical framework in the latter regime
We overview the concept of dynamical phase transitions in isolated quantum systems quenched out of e...
In this Thesis, I will report on the experiments performed during my Ph.D. in Pisa. The aim of the t...
The physics of highly excited Rydberg atoms is governed by blockade or exclusion interactions that h...
We investigate the nonequilibrium dynamics of a driven-dissipative spin ensemble with competing powe...
We discuss an open driven-dissipative many-body system, in which the competition of unitary Hamilton...
When atoms are excited to high-lying Rydberg states they interact strongly with dipolar forces. The ...
We study the out-of-equilibrium dynamics of dissipative gases of atoms excited to two or more high-l...
Dark states are stationary states of a dissipative, Lindblad-type time evolution with zero von Neuma...
We study the nonequilibrium dynamics of a many-body bosonic system on a lattice, subject to driving ...
Far-from-equilibrium dynamics that lead to self-organization are highly relevant to complex dynamica...
Driven-dissipative systems are expected to give rise to nonequilibrium phenomena that are absent in ...
We study the non-equilibrium dynamics of driven spin lattices in the presence of decoherence caused ...
In this thesis, we consider the forms of non-equilibrium phenomena that can arise in atoms or polar ...
We study the magnetic phases of a nonequilibrium spin chain, where coherent interactions between nei...
Spin-orbit-coupled bosons can exhibit rich equilibrium phases at low temperature and in the presence...
We overview the concept of dynamical phase transitions in isolated quantum systems quenched out of e...
In this Thesis, I will report on the experiments performed during my Ph.D. in Pisa. The aim of the t...
The physics of highly excited Rydberg atoms is governed by blockade or exclusion interactions that h...
We investigate the nonequilibrium dynamics of a driven-dissipative spin ensemble with competing powe...
We discuss an open driven-dissipative many-body system, in which the competition of unitary Hamilton...
When atoms are excited to high-lying Rydberg states they interact strongly with dipolar forces. The ...
We study the out-of-equilibrium dynamics of dissipative gases of atoms excited to two or more high-l...
Dark states are stationary states of a dissipative, Lindblad-type time evolution with zero von Neuma...
We study the nonequilibrium dynamics of a many-body bosonic system on a lattice, subject to driving ...
Far-from-equilibrium dynamics that lead to self-organization are highly relevant to complex dynamica...
Driven-dissipative systems are expected to give rise to nonequilibrium phenomena that are absent in ...
We study the non-equilibrium dynamics of driven spin lattices in the presence of decoherence caused ...
In this thesis, we consider the forms of non-equilibrium phenomena that can arise in atoms or polar ...
We study the magnetic phases of a nonequilibrium spin chain, where coherent interactions between nei...
Spin-orbit-coupled bosons can exhibit rich equilibrium phases at low temperature and in the presence...
We overview the concept of dynamical phase transitions in isolated quantum systems quenched out of e...
In this Thesis, I will report on the experiments performed during my Ph.D. in Pisa. The aim of the t...
The physics of highly excited Rydberg atoms is governed by blockade or exclusion interactions that h...