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Signatures of a quantum stabilized fluctuating phase and critical dynamics in a kinetically constrained open many-body system with two absorbing states

Carollo, Federico; Gnann, Markus; Perfetto, Gabriele; Lesanovsky, Igor

Signatures of a quantum stabilized fluctuating phase and critical dynamics in a kinetically constrained open many-body system with two absorbing states Thumbnail


Authors

Federico Carollo

Markus Gnann

Gabriele Perfetto



Abstract

We introduce and investigate an open many-body quantum system in which kinetically constrained coherent and dissipative processes compete. The form of the incoherent dissipative dynamics is inspired by that of epidemic spreading or cellular-automaton-based computation related to the density-classification problem. It features two nonfluctuating absorbing states as well as a Z2-symmetric point in parameter space. The coherent evolution is governed by a kinetically constrained Z2-symmetric many-body Hamiltonian which is related to the quantum XOR-Fredrickson-Andersen model. We show that the quantum coherent dynamics can stabilize a fluctuating state and we characterize the transition between this active phase and the absorbing states. We also identify a rather peculiar behavior at the Z2-symmetric point. Here the system approaches the absorbing-state manifold with a dynamics that follows a power law whose exponent continuously varies with the relative strength of the coherent dynamics. Our work shows how the interplay between coherent and dissipative processes as well as symmetry constraints may lead to a highly intricate nonequilibrium evolution and may stabilize phases that are absent in related classical problems.

Citation

Carollo, F., Gnann, M., Perfetto, G., & Lesanovsky, I. (2022). Signatures of a quantum stabilized fluctuating phase and critical dynamics in a kinetically constrained open many-body system with two absorbing states. Physical Review B, 106(9), Article 094315. https://doi.org/10.1103/PhysRevB.106.094315

Journal Article Type Article
Acceptance Date Sep 20, 2022
Online Publication Date Sep 29, 2022
Publication Date Sep 1, 2022
Deposit Date Sep 21, 2022
Publicly Available Date Sep 21, 2022
Journal Physical Review B
Print ISSN 2469-9950
Electronic ISSN 2469-9969
Publisher American Physical Society (APS)
Peer Reviewed Peer Reviewed
Volume 106
Issue 9
Article Number 094315
DOI https://doi.org/10.1103/PhysRevB.106.094315
Public URL https://nottingham-repository.worktribe.com/output/11466469
Publisher URL https://journals.aps.org/prb/abstract/10.1103/PhysRevB.106.094315

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