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Recurrences in an isolated quantum many-body system

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abstract

Even though the evolution of an isolated quantum system is unitary, the complexity of interacting many-body systems prevents the observation of recurrences of quantum states for all but the smallest systems. For large systems one can not access the full complexity of the quantum states and the requirements to observe a recurrence in experiments reduces to being close to the initial state with respect to the employed observable. Selecting an observable connected to the collective excitations in one-dimensional superfluids, we demonstrate recurrences of coherence and long range order in an interacting quantum many-body system containing thousands of particles. This opens up a new window into the dynamics of large quantum systems even after they reached a transient thermal-like state.

fields

quant-ph 1

years

2024 1

verdicts

CONDITIONAL 1

representative citing papers

On symmetry-resolved generalized entropies

quant-ph · 2024-12-18 · conditional · novelty 7.0

A new framework computes generalized charged moments and symmetry-resolved Rényi entropies for arbitrary excited states of the free compact boson CFT, benchmarked against the XX chain.

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  • On symmetry-resolved generalized entropies quant-ph · 2024-12-18 · conditional · none · ref 60 · internal anchor

    A new framework computes generalized charged moments and symmetry-resolved Rényi entropies for arbitrary excited states of the free compact boson CFT, benchmarked against the XX chain.