We study the impact of quenched disorder on the dynamics of locally constrained quantum spin chains, that describe 1D arrays of Rydberg atoms in both the frozen (Ising-type) and dressed (XY-type) regime. Performing large-scale numerical experiments, we observe no trace of many-body localization even at large disorder. Analyzing the role of quenched disorder terms in constrained systems we show that they act in two, distinct and competing ways: as an on-site disorder term for the basic excitations of the system, and as an interaction between excitations. The two contributions are of the same order, and as they compete (one towards localization, the other against it), one does never enter a truly strong disorder, weak interaction limit, where...
Closed generic quantum many-body systems may fail to thermalize under certain conditions even after ...
We focus on tight-binding Hamiltonians on a regular one-dimensional lattice with non-random long-ran...
When pushed out of equilibrium, generic interacting quantum systems equilibrate locally and are expe...
Quantum many-body systems with kinetic constraints exhibit intriguing relaxation dynamics. Recent ex...
Disordered quantum systems undergoing a many-body localization (MBL) transition fail to reach therma...
The venerable phenomena of Anderson localization, along with the much more recent many-body localiza...
The venerable phenomena of Anderson localization, along with the much more recent many-body localiza...
We study the time evolution after a quantum quench in a family of models whose degrees of freedom ar...
We study the time evolution after a quantum quench in a family of models whose degrees of freedom ar...
While global quantum quench has been extensively used in the literature to understand the localizati...
Recently it has been suggested that many-body localization (MBL) can occur in translation-invariant ...
Isolated, many-body quantum systems, evolving under their intrinsic dynamics, exhibit a multitude of...
In general, the dynamics of many-body quantum systems far-from-equilibrium is highly intricate, and ...
In this dissertation, we study delocalization mechanisms in strongly disordered systems. We focus on...
The concept of geometrical frustration has led to rich insights into condensed matter physics, espec...
Closed generic quantum many-body systems may fail to thermalize under certain conditions even after ...
We focus on tight-binding Hamiltonians on a regular one-dimensional lattice with non-random long-ran...
When pushed out of equilibrium, generic interacting quantum systems equilibrate locally and are expe...
Quantum many-body systems with kinetic constraints exhibit intriguing relaxation dynamics. Recent ex...
Disordered quantum systems undergoing a many-body localization (MBL) transition fail to reach therma...
The venerable phenomena of Anderson localization, along with the much more recent many-body localiza...
The venerable phenomena of Anderson localization, along with the much more recent many-body localiza...
We study the time evolution after a quantum quench in a family of models whose degrees of freedom ar...
We study the time evolution after a quantum quench in a family of models whose degrees of freedom ar...
While global quantum quench has been extensively used in the literature to understand the localizati...
Recently it has been suggested that many-body localization (MBL) can occur in translation-invariant ...
Isolated, many-body quantum systems, evolving under their intrinsic dynamics, exhibit a multitude of...
In general, the dynamics of many-body quantum systems far-from-equilibrium is highly intricate, and ...
In this dissertation, we study delocalization mechanisms in strongly disordered systems. We focus on...
The concept of geometrical frustration has led to rich insights into condensed matter physics, espec...
Closed generic quantum many-body systems may fail to thermalize under certain conditions even after ...
We focus on tight-binding Hamiltonians on a regular one-dimensional lattice with non-random long-ran...
When pushed out of equilibrium, generic interacting quantum systems equilibrate locally and are expe...