Recent realization of a kinetically constrained chain of Rydberg atoms by Bernien et al., [Nature (London) 551, 579 (2017)] resulted in the observation of unusual revivals in the many-body quantum dynamics. In our previous work [C. J. Turner et al., Nat. Phys. 14, 745 (2018)], such dynamics was attributed to the existence of “quantum scarred” eigenstates in the many-body spectrum of the experimentally realized model. Here, we present a detailed study of the eigenstate properties of the same model. We find that the majority of the eigenstates exhibit anomalous thermalization: the observable expectation values converge to their Gibbs ensemble values, but parametrically slower compared to the predictions of the eigenstate thermalization hypoth...
We study the possible breakdown of quantum thermalization in a model of itinerant electrons on a one...
Quantum many-body scars have been put forward as counterexamples to the eigenstate thermalization hy...
There is a dichotomy in the nonequilibrium dynamics of quantum many-body systems. In the presence of...
Recent realization of a kinetically constrained chain of Rydberg atoms by Bernien et al., [Nature (L...
Quantum scars are nonthermal eigenstates characterized by low entanglement entropy, initially detect...
Thermalization is the inevitable fate of many complex quantum systems, whose dynamics allow them to ...
A recent experiment in the Rydberg atom chain observed unusual oscillatory quench dynamics with a ch...
The success of statistical mechanics in describing complex quantum systems rests upon typicality pro...
The concept of quantum many-body scars has recently been put forward as a route to describe weak erg...
Statistical mechanics relies on relaxation towards the maximally entropic state in thermal equilibri...
The thermodynamic description of many-particle systems rests on the assumption of ergodicity, the ab...
Quantum many-body scar states are exceptional finite energy density eigenstates in an otherwise ther...
We study weak ergodicity breaking in a one-dimensional, nonintegrable spin-1 XY model. We construct ...
Motivated by recent experimental observations of coherent many-body revivals in a constrained Rydber...
Recent experimental observation of weak ergodicity breaking in Rydberg atom quantum simulators has s...
We study the possible breakdown of quantum thermalization in a model of itinerant electrons on a one...
Quantum many-body scars have been put forward as counterexamples to the eigenstate thermalization hy...
There is a dichotomy in the nonequilibrium dynamics of quantum many-body systems. In the presence of...
Recent realization of a kinetically constrained chain of Rydberg atoms by Bernien et al., [Nature (L...
Quantum scars are nonthermal eigenstates characterized by low entanglement entropy, initially detect...
Thermalization is the inevitable fate of many complex quantum systems, whose dynamics allow them to ...
A recent experiment in the Rydberg atom chain observed unusual oscillatory quench dynamics with a ch...
The success of statistical mechanics in describing complex quantum systems rests upon typicality pro...
The concept of quantum many-body scars has recently been put forward as a route to describe weak erg...
Statistical mechanics relies on relaxation towards the maximally entropic state in thermal equilibri...
The thermodynamic description of many-particle systems rests on the assumption of ergodicity, the ab...
Quantum many-body scar states are exceptional finite energy density eigenstates in an otherwise ther...
We study weak ergodicity breaking in a one-dimensional, nonintegrable spin-1 XY model. We construct ...
Motivated by recent experimental observations of coherent many-body revivals in a constrained Rydber...
Recent experimental observation of weak ergodicity breaking in Rydberg atom quantum simulators has s...
We study the possible breakdown of quantum thermalization in a model of itinerant electrons on a one...
Quantum many-body scars have been put forward as counterexamples to the eigenstate thermalization hy...
There is a dichotomy in the nonequilibrium dynamics of quantum many-body systems. In the presence of...