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arXiv:2208.12091·v2·Nuclear Theory

The high-density equation of state in heavy-ion collisions: Constraints from proton flow

Jan Steinheimer🇩🇪 · Anton Motornenko🇩🇪 · Agnieszka Sorensen🇺🇸 · Yasushi Nara🇯🇵 · Volker Koch🇺🇸 · Marcus Bleicher🇩🇪

Abstract

A set of different equations of state is implemented in the molecular dynamics part of a non-equilibrium transport simulation (UrQMD) of heavy-ion collisions. It is shown how different flow observables are affected by the density dependence of the equation of state. In particular, the effects of a phase transition at high density are explored, including an expected reduction in mean . We also show that an increase in is characteristic for a strong softening of the equation of state. The phase transitions with a low coexistence density, , show a distinct minimum in the slope of the directed flow as a function of the beam energy, which would be a clear experimental signal. By comparing our results with experimental data, we can exclude any strong phase transition at densities below .

Comments: 12 pages, 5 figures, version accepted for publication

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