Spatio-temporal heterogeneity of entanglement in many-body localized systems
arXiv:2108.05594 · doi:10.1103/PhysRevB.105.184202
Abstract
We propose a spatio-temporal characterization of the entanglement dynamics in many-body localized (MBL) systems, which exhibits a striking resemblance with dynamical heterogeneity in classical glasses. Specifically, we find that the relaxation times of local entanglement, as measured by the concurrence, are spatially correlated yielding a dynamical length scale for quantum entanglement. As a consequence of this spatio-temporal analysis, we observe that the considered MBL system is made up of dynamically correlated clusters with a size set by this entanglement length scale. The system decomposes into compartments of different activity such as active regions with fast quantum entanglement dynamics and inactive regions where the dynamics is slow. We further find that the relaxation times of the on-site concurrence become broader distributed and more spatially correlated, as disorder increases or the energy of the initial state decreases. Through this spatio-temporal characterization of entanglement, our work unravels a previously unrecognized connection between the behavior of classical glasses and the genuine quantum dynamics of MBL systems.
12 pages, 8 figures
References in corpus (17)
- Theoretical perspective on the glass transition and amorphous materials
- Localization of interacting fermions at high temperature
- Many-body localization edge in the random-field Heisenberg chain
- Many body localization in Heisenberg XXZ magnet in a random field
- Phenomenology of fully many-body-localized systems
- Supercooled Liquids for Pedestrians
- Integrals of motion in the Many-Body localized phase
- Ergodicity breaking in a model showing many-body localization
- Dynamic heterogeneity in amorphous materials
- Many-body localization dynamics from gauge invariance
- Quantum quenches in the many-body localized phase
- Maximally multipartite entangled states
- Quantum Mutual Information as a Probe for Many-Body Localization
- Facilitated spin models of dissipative quantum glasses
- Signatures of many-body localisation in the dynamics of two-sites entanglement
- Entanglement dynamics of a many-body localized system coupled to a bath
- Signatures of Many-Body Localization in the Dynamics of Two-Level Systems in Glasses
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