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arXiv:2510.05565·v2·High Energy Physics — Phenomenology

Electromagnetic probes as signatures for a first-order QCD phase transition

Mohamad Lukman Aidid Mohd Yusoff🇲🇾 · Norhasliza Yusof🇲🇾 · Hasan Abu Kassim🇲🇾 · Jan Steinheimer🇩🇪 · Marcus Bleicher🇩🇪 · Apiwit Kittiratpattana🇹🇭 · Ayut Limphirat🇹🇭 · Christoph Herold🇹🇭

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Abstract

We investigate dimuon production in the context of a first-order phase transition in QCD matter using a chiral fluid dynamics model. This approach incorporates non-equilibrium effects such as entropy production and reheating, which emerge during the dynamical evolution through a first-order phase transition. By comparing equilibrium and non-equilibrium scenarios across a range of beam energies (~GeV), we analyze the resulting invariant mass spectra. Our results reveal a substantial enhancement of dilepton yields in the non-equilibrium scenario, particularly pronounced at lower beam energies, where reheating leads to a prolonged lifetime of the fireball and increased emission. The enhancement persists even after normalizing to pion multiplicities, indicating sensitivity beyond effects of entropy production.

Comments: 7 pages, 4 figures

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