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Stabilizer entropy in non-integrable quantum evolutions

Published 13 Dec 2024 in quant-ph, cond-mat.str-el, hep-th, nlin.CD, and nlin.SI | (2412.10228v2)

Abstract: Entanglement and stabilizer entropy are both involved in the onset of complex behavior in quantum many-body systems. Their interplay is at the root of complexity of simulability, scrambling, thermalization and typicality. In this work, we study the dynamics of entanglement, stabilizer entropy, and a novel quantity assessing their interplay - called anti-flatness, after a quantum quench of a spin chain. We find that free-fermion theories show a gap in the long-time behavior of these resources compared to their random matrix theory value while non-integrable models saturate it.

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