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    Quantum fluctuations in a quartet superfluid of two-dimensional Fermi mixtures

    Wei Wang1,2, Yupeng Wang1, and Xiaoling Cui1,*

    • *Contact author: xlcui@iphy.ac.cn

    Phys. Rev. B 114, 094516 – Published 24 August, 2026

    DOI: https://doi.org/10.1103/486s-1d49

    Abstract

    We study quantum fluctuations in a quartet superfluid (QSF) of two-dimensional (2D) fermion mixtures with mass imbalance. Here QSF is a high-order superfluid that corresponds to the condensation of (1+3) clusters, each consisting of a light fermion and three heavy ones. By incorporating the Gaussian fluctuations respecting dominant four-body correlations in this system, our theory successfully recovers the leading universal logarithmic contribution to the 2D equation of state in the deep binding regime, thereby offering a correct physical picture of quartet clusters behaving as composite bosons. By extending the Gaussian fluctuation theory from pairing to quartet superfluids, our results shed light on quantum fluctuations in general fermion superfluids with arbitrarily high-order correlations.

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