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Description of the first order phase transition region of an equation of state for QCD with a critical point

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arxiv 2409.13961 v1 pith:D36GO6P7 submitted 2024-09-21 nucl-th hep-ph

Description of the first order phase transition region of an equation of state for QCD with a critical point

classification nucl-th hep-ph
keywords phaseregioncoexistenceequationfirstorderstatetransition
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We map the mean-field Ising model equation of state onto the QCD phase diagram, and reconstruct the full coexistence region in the case of a first order phase transition. Beyond the coexistence line, we maintain access to the spinodal region in the phase diagram, thus providing a description of metastable and unstable phases of matter as well. In this way, our approach includes the super-heated hadronic phase and the super-cooled quark-gluon plasma, which are useful for hydrodynamic simulations of the fireball created in a heavy-ion collision at low collision energy, where a first order phase transition is expected. We discuss the features of the pressure and other thermodynamic observables as functions of temperature and baryonic chemical potential, in particular their behavior in the coexistence region. Finally, we compare our equation of state to other 3D-Ising model ones available in the literature.

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  1. Theory Summary

    nucl-th 2025-09 unverdicted

    A conference summary paper reports selected theory results from Quark Matter 2025 in heavy-ion physics, with no new original research.