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◆ Physical review letters2026-08-28

Nonequilibrium Phases and Quantum Correlations in Synthetic Transport Models.

Uddhav Sen, Federico Carollo, Sascha Wald

原始摘要(英文原文)· Original abstract
Quantum devices featuring midcircuit measurement and reset capabilities, such as quantum computers and dual-species Rydberg quantum simulators, enable the realization of quantum cellular automata. These systems evolve in discrete time following local updates implemented by unitary gates and allow for the realization of both closed and synthetic dissipative dynamics. Here, we focus on quantum cellular automata that implement minimal models of classical and quantum transport. To illustrate our ideas, we focus on a discrete-time totally asymmetric simple exclusion process and investigate how coherent dynamical contributions allow for the emergence of quantum effects and correlations. We find that bipartite entanglement dominates the transient evolution, while stationary states can retain quantum correlations beyond entanglement. Our results suggest viable routes for realizing transport models on quantum devices and characterizing collective quantum correlations in strongly driven systems.
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Nonequilibrium Phases and Quantum Correlations in Synthetic Transport Models. — 科研速览 Science Skim