Entanglement and entropy are key concepts standing at the foundations of quantum and statistical mechanics. Recently, the study of quantum quenches revealed that these concepts are intricately intertwined. Although the unitary time evolution ensuing from a pure state maintains the system at zero entropy, local properties at long times are captured by a statistical ensemble with nonzero thermodynamic entropy, which is the entanglement accumulated during the dynamics. Therefore, understanding the entanglement evolution unveils how thermodynamics emerges in isolated systems. Alas, an exact computation of the entanglement dynamics was available so far only for noninteracting systems, whereas it was deemed unfeasible for interacting ones. Here, ...
We define and analyse the concept of entanglement production during the evolution of a general quant...
We study the entanglement dynamics of thermofield double (TFD) states in integrable spin chains and ...
The quantum entropy is usually defined using von Neumann's formula, which measures lack of informati...
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...
The time evolution of the entanglement entropy in non-equilibrium quantum systems provides crucial ...
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 i...
The time evolution of the entanglement entropy in non-equilibrium quantum systems provides crucial i...
In these lectures, I pedagogically review some recent advances in the study of the non-equilibrium d...
We investigate the crossover of the entanglement entropy toward its thermal value in nearly integrab...
A powerful perspective in understanding nonequilibrium quantum dynamics is through the time evolutio...
We define and analyse the concept of entanglement production during the evolution of a general quant...
We study the entanglement dynamics of thermofield double (TFD) states in integrable spin chains and ...
The quantum entropy is usually defined using von Neumann's formula, which measures lack of informati...
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...
The time evolution of the entanglement entropy in non-equilibrium quantum systems provides crucial ...
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 i...
The time evolution of the entanglement entropy in non-equilibrium quantum systems provides crucial i...
In these lectures, I pedagogically review some recent advances in the study of the non-equilibrium d...
We investigate the crossover of the entanglement entropy toward its thermal value in nearly integrab...
A powerful perspective in understanding nonequilibrium quantum dynamics is through the time evolutio...
We define and analyse the concept of entanglement production during the evolution of a general quant...
We study the entanglement dynamics of thermofield double (TFD) states in integrable spin chains and ...
The quantum entropy is usually defined using von Neumann's formula, which measures lack of informati...