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    Ruelle-Pollicott decay of out-of-time-order correlators in many-body systems

    Jerónimo Duarte1, Ignacio García-Mata1, and Diego A. Wisniacki2

    Phys. Rev. E 113, 024209 – Published 17 February, 2026

    DOI: https://doi.org/10.1103/5rlf-93y8

    Abstract

    The out-of-time-order correlator (OTOC) quantifies information scrambling in quantum systems and serves as a key diagnostic of quantum chaos. In one-body systems with a classical counterpart, the relaxation of the OTOC is governed by Ruelle-Pollicott resonances. For many-body systems lacking a semiclassical limit, recent studies have identified an analogous role played by the Liouvillian spectrum of weakly open extensions of the dynamics, where the slowest decay rate—the Liouvillian gap—encodes relaxation. Here we study the kicked Ising spin chain and show that the long-time exponential decay of the OTOC in the isolated system occurs at a rate equal to twice this intrinsic gap. This correspondence is demonstrated across parameter regions exhibiting distinct level spacing statistics, indicating that the Liouvillian spectrum provides a robust framework for characterizing relaxation and irreversibility in closed many-body quantum systems.

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