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    Work statistics and thermal phase transitions

    Kwai-Kong Ng* and Min-Fong Yang†

    • *Contact author: kkng@thu.edu.tw
    • †Contact author: mfyang@thu.edu.tw

    Phys. Rev. E 112, 014110 – Published 7 July, 2025

    DOI: https://doi.org/10.1103/77fj-z867

    Abstract

    The investigation of nonequilibrium thermodynamics in quantum many-body systems underscores the importance of quantum work, which differs from its classical counterpart due to its statistical nature. Recent studies have shown that quantum work can serve as an effective indicator of quantum phase transitions in systems subjected to sudden quenches. However, the potential of quantum work to identify thermal phase transitions remains largely unexplored. In this paper, we examine several types of thermal phase transitions in a sudden-quench hard-core boson model, including Ising, three-state Potts, and Berezinskii-Kosterlitz-Thouless transitions. Through finite-size scaling analysis, we conclude that work statistics can also characterize the critical behaviors of thermal phase transitions in generic many-body systems. This study lays the groundwork for broader applications of work statistics in analyzing critical phenomena across diverse settings.

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