A viscous hydrodynamic study shows that normalized symmetric cumulants of flow harmonics can discriminate a crossover QCD equation of state from a first-order one at 62.4 GeV Au+Au collisions.
QCD matter with a crossover and a first-order phase transition
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abstract
We present a phenomenological parametrization of the phase diagram of QCD as a function of temperature $T$ and baryochemical potential $\mu$. The parametrization is constructed by introducing a switching function which controls the nature of the transition between the Hadron-Resonance Gas (HRG) and Quark-Gluon Plasma (QGP) phases of nuclear matter, such that the equation of state (EOS) possesses a rapid crossover at large $T$ and small $\mu$, a critical point placed anywhere along the phase transition line, and a first-order transition at small $T$ and large $\mu$. This EOS offers a convenient phenomenological tool for assessing the possible effects of the conjectured QCD critical point on heavy-ion observables.
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Normalized symmetric cumulants as a measure of QCD phase transition: a viscous hydrodynamic study
A viscous hydrodynamic study shows that normalized symmetric cumulants of flow harmonics can discriminate a crossover QCD equation of state from a first-order one at 62.4 GeV Au+Au collisions.