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    New solution to the hyperon puzzle of neutron stars: Quantum many-body effects

    Hao-Fu Zhu1,2, Guo-Zhu Liu3,*, Xufen Wu1,2, and Ye-Fei Yuan1,2

    • *Contact author: gzliu@ustc.edu.cn

    Phys. Rev. D 113, 043050 – Published 23 February, 2026

    DOI: https://doi.org/10.1103/gxyr-v5h7

    Abstract

    The hyperon puzzle refers to the challenge of reconciling the existence of hyperons in neutron star cores and the observed high masses of neutron stars. The recent discovery of PSR J0952-0607 (2.35±0.17M) has intensified this challenge. Existing solutions fail to achieve such a high mass and often predict unrealistically fast cooling that is at odds with observations. Here, we propose a novel solution to the hyperon puzzle. Using the Dyson-Schwinger equation approach, we incorporate the quantum many-body effects caused by strong baryon-meson interactions into the equation of state for cold baryonic matter and find it stiff enough to support a maximum hyperon star mass of Mmax2.59M, which can explain all the observed high neutron star masses. The resulting proton and hyperon fractions are remarkably low, thus the nucleonic and hyperonic direct Urca processes are significantly suppressed. As a result, fast cooling typically does not occur in ordinary neutron stars.

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