The time evolution of the entanglement entropy in non-equilibrium quantum systems provides crucial information about the structure of the time-dependent state. For quantum quench protocols, by combining a quasiparticle picture for the entanglement spreading with the exact knowledge of the stationary state provided by Bethe ansatz, it is possible to obtain an exact and analytic description of the evolution of the entanglement entropy. Here we discuss the application of these ideas to several integrable models. First we show that for non-interacting systems, both bosonic and fermionic, the exact time-dependence of the entanglement entropy can be derived by elementary techniques and without solving the dynamics. We then provide exact results f...
A typical working condition in the study of quantum quenches is that the initial state produces a di...
A typical working condition in the study of quantum quenches is that the initial state produces a di...
In these lectures, I pedagogically review some recent advances in the study of the non-equilibrium d...
The time evolution of the entanglement entropy in non-equilibrium quantum systems provides crucial i...
The time evolution of the entanglement entropy in non-equilibrium quantum systems provides crucial i...
The time evolution of the entanglement entropy in non-equilibrium quantum systems provides crucial ...
The time evolution of the entanglement entropy in non-equilibrium quantum systems provides crucial i...
Entanglement and entropy are key concepts standing at the foundations of quantum and statistical mec...
Entanglement and entropy are key concepts standing at the foundations of quantum and statistical mec...
Entanglement and entropy are key concepts standing at the foundations of quantum and statistical mec...
Entanglement and entropy are key concepts standing at the foundations of quantum and statistical me...
A powerful perspective in understanding nonequilibrium quantum dynamics is through the time evolutio...
Quantum quench is a non-equilibrium process where the Hamiltonian is suddenly changed during the qua...
We investigate the crossover of the entanglement entropy toward its thermal value in nearly integrab...
The primary goals of this dissertaion are to describe and elucidate a new formalism to study the out...
A typical working condition in the study of quantum quenches is that the initial state produces a di...
A typical working condition in the study of quantum quenches is that the initial state produces a di...
In these lectures, I pedagogically review some recent advances in the study of the non-equilibrium d...
The time evolution of the entanglement entropy in non-equilibrium quantum systems provides crucial i...
The time evolution of the entanglement entropy in non-equilibrium quantum systems provides crucial i...
The time evolution of the entanglement entropy in non-equilibrium quantum systems provides crucial ...
The time evolution of the entanglement entropy in non-equilibrium quantum systems provides crucial i...
Entanglement and entropy are key concepts standing at the foundations of quantum and statistical mec...
Entanglement and entropy are key concepts standing at the foundations of quantum and statistical mec...
Entanglement and entropy are key concepts standing at the foundations of quantum and statistical mec...
Entanglement and entropy are key concepts standing at the foundations of quantum and statistical me...
A powerful perspective in understanding nonequilibrium quantum dynamics is through the time evolutio...
Quantum quench is a non-equilibrium process where the Hamiltonian is suddenly changed during the qua...
We investigate the crossover of the entanglement entropy toward its thermal value in nearly integrab...
The primary goals of this dissertaion are to describe and elucidate a new formalism to study the out...
A typical working condition in the study of quantum quenches is that the initial state produces a di...
A typical working condition in the study of quantum quenches is that the initial state produces a di...
In these lectures, I pedagogically review some recent advances in the study of the non-equilibrium d...