Quantum speed limit for the OTOC from an open systems perspective

Fuente: arXiv
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Hauptverfasser: Tripathy, Devjyoti, Thingna, Juzar, Deffner, Sebastian
Format: Preprint
Veröffentlicht: 2025
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author Tripathy, Devjyoti
Thingna, Juzar
Deffner, Sebastian
author_facet Tripathy, Devjyoti
Thingna, Juzar
Deffner, Sebastian
contents Scrambling, the delocalization of initially localized quantum information, is commonly characterized by the out-of-time ordered correlator (OTOC). Employing the OTOC-Renyi-2 entropy theorem we derive a quantum speed limit for the OTOC, which sets an lower bound for the rate with which information can be scrambled. This bound becomes particularly tractable by describing the scrambling of information in a closed quantum system as an effective decoherence process of an open system interacting with an environment. We prove that decay of the OTOC can be bounded by the strength of the system-environment coupling and two-point environmental correlation functions. We validate our analytic bound numerically using the non-integrable transverse field Ising model. Our results provide a universal and model-agnostic quantitative framework for understanding the dynamical limits of information spreading across quantum many-body physics, condensed matter, and engineered quantum platforms.
format Preprint
id arxiv_https___arxiv_org_abs_2509_13519
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Quantum speed limit for the OTOC from an open systems perspective
Tripathy, Devjyoti
Thingna, Juzar
Deffner, Sebastian
Quantum Physics
Statistical Mechanics
Scrambling, the delocalization of initially localized quantum information, is commonly characterized by the out-of-time ordered correlator (OTOC). Employing the OTOC-Renyi-2 entropy theorem we derive a quantum speed limit for the OTOC, which sets an lower bound for the rate with which information can be scrambled. This bound becomes particularly tractable by describing the scrambling of information in a closed quantum system as an effective decoherence process of an open system interacting with an environment. We prove that decay of the OTOC can be bounded by the strength of the system-environment coupling and two-point environmental correlation functions. We validate our analytic bound numerically using the non-integrable transverse field Ising model. Our results provide a universal and model-agnostic quantitative framework for understanding the dynamical limits of information spreading across quantum many-body physics, condensed matter, and engineered quantum platforms.
title Quantum speed limit for the OTOC from an open systems perspective
topic Quantum Physics
Statistical Mechanics
url https://arxiv.org/abs/2509.13519