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    Imaginary-Time Mpemba Effect in Quantum Many-Body Systems

    Wei-Xuan Chang1,2, Shuai Yin3,4,*, Shi-Xin Zhang1,†, and Zi-Xiang Li1,2,‡

    • *Contact author: yinsh6@mail.sysu.edu.cn
    • †Contact author: shixinzhang@iphy.ac.cn
    • ‡Contact author: zixiangli@iphy.ac.cn

    Phys. Rev. Lett. 136, 100403 – Published 11 March, 2026

    DOI: https://doi.org/10.1103/dvrt-n2hq

    Abstract

    Various exotic phenomena emerge in nonequilibrium quantum many-body systems. The Mpemba effect, denoting the situation where a hot system freezes faster than a colder one, is a counterintuitive nonequilibrium phenomenon that has attracted enduring interest for more than half a century. In this Letter, we unveil a novel phenomenon of the Mpemba effect in the imaginary-time relaxation dynamics in quantum many-body systems, termed as the imaginary-time Mpemba effect (ITME). We propose a mechanism for the ITME rooted in the initial state’s eigenbasis expansion, and we demonstrate its emergence in representative quantum lattice models. Using sign-free quantum Monte Carlo (QMC) simulations, we unequivocally establish the existence of the ITME across diverse interacting quantum systems. Crucially, given the widespread use of imaginary-time dynamics for ground-state calculations, the discovery of the ITME potentially provides a new pathway to accelerate quantum many-body simulations, particularly for QMC methods hindered by the sign problem.

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