Thermalization is the inevitable fate of many complex quantum systems, whose dynamics allow them to fully explore the vast configuration space regardless of the initial state---the behaviour known as quantum ergodicity. In a quest for experimental realizations of coherent long-time dynamics, efforts have focused on ergodicity-breaking mechanisms, such as integrability and localization. The recent discovery of persistent revivals in quantum simulators based on Rydberg atoms have pointed to the existence of a new type of behaviour where the system rapidly relaxes for most initial conditions, while certain initial states give rise to non-ergodic dynamics. This collective effect has been named ”quantum many-body scarring’by analogy with a relat...
International audienceThe discovery of quantum many-body scars (QMBS) both in Rydberg atom simulator...
A recent experiment in the Rydberg atom chain observed unusual oscillatory quench dynamics with a ch...
Quantum chaos and the eigenstate thermalization hypothesis are based on the assumption of the validi...
Thermalization is the inevitable fate of many complex quantum systems, whose dynamics allow them to ...
The thermodynamic description of many-particle systems rests on the assumption of ergodicity, the ab...
The success of statistical mechanics in describing complex quantum systems rests upon typicality pro...
Motivated by recent experimental observations of coherent many-body revivals in a constrained Rydber...
Recent realization of a kinetically constrained chain of Rydberg atoms by Bernien et al., [Nature (L...
The dynamics of generic closed many-body quantum systems is believed to be ergodic. A paradigmatic e...
Quantum-many body scarring is a recently discovered paradigm of weak ergodicity breaking that allows...
We study weak ergodicity breaking in a one-dimensional, nonintegrable spin-1 XY model. We construct ...
Statistical mechanics relies on relaxation towards the maximally entropic state in thermal equilibri...
The concept of quantum many-body scars has recently been put forward as a route to describe weak erg...
Quantum many-body scars have been put forward as counterexamples to the eigenstate thermalization hy...
Ergodicity depicts a thorough exploration of phase space to reach thermal equilibrium for most isola...
International audienceThe discovery of quantum many-body scars (QMBS) both in Rydberg atom simulator...
A recent experiment in the Rydberg atom chain observed unusual oscillatory quench dynamics with a ch...
Quantum chaos and the eigenstate thermalization hypothesis are based on the assumption of the validi...
Thermalization is the inevitable fate of many complex quantum systems, whose dynamics allow them to ...
The thermodynamic description of many-particle systems rests on the assumption of ergodicity, the ab...
The success of statistical mechanics in describing complex quantum systems rests upon typicality pro...
Motivated by recent experimental observations of coherent many-body revivals in a constrained Rydber...
Recent realization of a kinetically constrained chain of Rydberg atoms by Bernien et al., [Nature (L...
The dynamics of generic closed many-body quantum systems is believed to be ergodic. A paradigmatic e...
Quantum-many body scarring is a recently discovered paradigm of weak ergodicity breaking that allows...
We study weak ergodicity breaking in a one-dimensional, nonintegrable spin-1 XY model. We construct ...
Statistical mechanics relies on relaxation towards the maximally entropic state in thermal equilibri...
The concept of quantum many-body scars has recently been put forward as a route to describe weak erg...
Quantum many-body scars have been put forward as counterexamples to the eigenstate thermalization hy...
Ergodicity depicts a thorough exploration of phase space to reach thermal equilibrium for most isola...
International audienceThe discovery of quantum many-body scars (QMBS) both in Rydberg atom simulator...
A recent experiment in the Rydberg atom chain observed unusual oscillatory quench dynamics with a ch...
Quantum chaos and the eigenstate thermalization hypothesis are based on the assumption of the validi...