The construction of the generalized Gibbs ensemble, to which isolated integrable quantum many-body systems relax after a quantum quench, is based upon the principle of maximum entropy. In contrast, there are no universal and model-independent laws that govern the relaxation dynamics and stationary states of open quantum systems, which are subjected to Markovian drive and dissipation. Yet, as we show, relaxation of driven-dissipative systems after a quantum quench can, in fact, be determined by a maximum entropy ensemble, if the Liouvillian that generates the dynamics of the system has parity-time symmetry. Focusing on the specific example of a driven-dissipative Kitaev chain, we show that, similarly to isolated integrable systems, the appro...
This work considers entropy generation and relaxation in quantum quenches in the Ising and 3-state P...
Statistical mechanics relies on relaxation towards the maximally entropic state in thermal equilibri...
We study the out-of-equilibrium dynamics of the quantum cellular automaton Rule 54 using a time-chan...
We study the unitary dynamics and the thermalization properties of free-fermion-like Hamiltonians af...
We study the unitary dynamics and the thermalization properties of free-fermion-like Hamiltonians af...
We consider the time evolution following a quantum quench in spin-1/2 chains. It is well known that ...
8 pagesInternational audienceOne of the fundamental principles of statistical physics is that only p...
8 pagesInternational audienceOne of the fundamental principles of statistical physics is that only p...
The integrable system is constrained strictly by the conservation law during the time evolution, and...
The integrable system is constrained strictly by the conservation law during the time evolution, and...
Even after almost a century, the foundations of quantum statistical mechanics are still not complete...
We investigate equilibration and generalized thermalization of the quantum Harmonic chain under loca...
We consider nonequilibrium time evolution in quantum spin chains after a global quench. We show that...
We consider nonequilibrium time evolution in quantum spin chains after a global quench. We show that...
Abstract: A new approach to quantum Markov processes is developed and the corresponding Fokker-Planc...
This work considers entropy generation and relaxation in quantum quenches in the Ising and 3-state P...
Statistical mechanics relies on relaxation towards the maximally entropic state in thermal equilibri...
We study the out-of-equilibrium dynamics of the quantum cellular automaton Rule 54 using a time-chan...
We study the unitary dynamics and the thermalization properties of free-fermion-like Hamiltonians af...
We study the unitary dynamics and the thermalization properties of free-fermion-like Hamiltonians af...
We consider the time evolution following a quantum quench in spin-1/2 chains. It is well known that ...
8 pagesInternational audienceOne of the fundamental principles of statistical physics is that only p...
8 pagesInternational audienceOne of the fundamental principles of statistical physics is that only p...
The integrable system is constrained strictly by the conservation law during the time evolution, and...
The integrable system is constrained strictly by the conservation law during the time evolution, and...
Even after almost a century, the foundations of quantum statistical mechanics are still not complete...
We investigate equilibration and generalized thermalization of the quantum Harmonic chain under loca...
We consider nonequilibrium time evolution in quantum spin chains after a global quench. We show that...
We consider nonequilibrium time evolution in quantum spin chains after a global quench. We show that...
Abstract: A new approach to quantum Markov processes is developed and the corresponding Fokker-Planc...
This work considers entropy generation and relaxation in quantum quenches in the Ising and 3-state P...
Statistical mechanics relies on relaxation towards the maximally entropic state in thermal equilibri...
We study the out-of-equilibrium dynamics of the quantum cellular automaton Rule 54 using a time-chan...