Understanding the general principles underlying strongly interacting quantum states out of equilibrium is one of the most important tasks of current theoretical physics. With experiments accessing the intricate dynamics of many-body quantum systems, it is paramount to develop powerful methods that encode the emergent physics. Up to now, the strong dichotomy observed between integrable and nonintegrable evolutions made an overarching theory difficult to build, especially for transport phenomena where spacetime profiles are drastically different. We present a novel framework for studying transport in integrable systems: hydrodynamics with infinitely many conservation laws. This bridges the conceptual gap between integrable and nonintegrable q...
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...
In this Thesis I present the results of four research projects I carried out during my Ph.D. trainin...
Understanding the general principles underlying strongly interacting quantum states out of equilibri...
The conventional theory of hydrodynamics describes the evolution in time of chaotic many-particle s...
The generalized hydrodynamic (GHD) approach has been extremely successful in describing the out-of-e...
The generalized hydrodynamic (GHD) approach has been extremely successful in describing the out-of-e...
The generalized hydrodynamic (GHD) approach has been extremely successful in describing the out-of-e...
Quantum integrable systems, such as the interacting Bose gas in one dimension and the XXZ quantum sp...
Two of the most active areas in quantum many-particle dynamics involve systems with an unusually lar...
The present manuscript focuses on out of equilibrium physics in two dimensional models. It has the p...
Among the few lessons that Physics teaches us on a daily basis, one in particular is hard to miss: t...
Identifying universal properties of non-equilibrium quantum states is a major challenge in modern ph...
A tremendous amount of recent attention has focused on characterizing the dynamical properties of pe...
Among the few lessons that Physics teaches us on a daily basis, one in particular is hard to miss: t...
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...
In this Thesis I present the results of four research projects I carried out during my Ph.D. trainin...
Understanding the general principles underlying strongly interacting quantum states out of equilibri...
The conventional theory of hydrodynamics describes the evolution in time of chaotic many-particle s...
The generalized hydrodynamic (GHD) approach has been extremely successful in describing the out-of-e...
The generalized hydrodynamic (GHD) approach has been extremely successful in describing the out-of-e...
The generalized hydrodynamic (GHD) approach has been extremely successful in describing the out-of-e...
Quantum integrable systems, such as the interacting Bose gas in one dimension and the XXZ quantum sp...
Two of the most active areas in quantum many-particle dynamics involve systems with an unusually lar...
The present manuscript focuses on out of equilibrium physics in two dimensional models. It has the p...
Among the few lessons that Physics teaches us on a daily basis, one in particular is hard to miss: t...
Identifying universal properties of non-equilibrium quantum states is a major challenge in modern ph...
A tremendous amount of recent attention has focused on characterizing the dynamical properties of pe...
Among the few lessons that Physics teaches us on a daily basis, one in particular is hard to miss: t...
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...
In this Thesis I present the results of four research projects I carried out during my Ph.D. trainin...