Hadronization and hadronic freeze-out in relativistic nuclear collisions
F. Becattini, Marcus Bleicher, Thorsten Sven Kollegger, Michael Mitrovski, Tim Schuster, Reinhard Stock
Abstract
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F. Becattini, Marcus Bleicher, Thorsten Sven Kollegger, Michael Mitrovski, Tim Schuster, Reinhard Stock
Abstract
Open-access reader
We analyze hadrochemical freeze-out in central Pb + Pb collisions at CERN SPS energies, employing the hybrid version of the Ultrarelativistic Quantum Molecular Dynamics model, which describes the transition from a hydrodynamic stage to hadrons by the Cooper-Frye mechanism, and matches to a final hadron-resonance cascade. We fit the results both before and after the cascade stage using the statistical model to assess the effect of the cascade phase. We observe a strong effect on antibaryon yields except anti-$\ensuremath{\Omega}$, resulting in a shift in $T$ and ${\ensuremath{\mu}}_{B}$ of the freeze-out curve. We discuss indications of a similar effect in SPS and RHIC data, and propose a method to recover the bulk hadron freeze-out conditions.
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We analyze hadrochemical freeze-out in central Pb + Pb collisions at CERN SPS energies, employing the hybrid version of the Ultrarelativistic Quantum Molecular Dynamics model, which describes the transition from a hydrodynamic stage to hadrons by the Cooper-Frye mechanism, and matches to a final hadron-resonance cascade. We fit the results both before and after the cascade stage using the statistical model to assess the effect of the cascade phase. We observe a strong effect on antibaryon yields except anti-$\ensuremath{\Omega}$, resulting in a shift in $T$ and ${\ensuremath{\mu}}_{B}$ of the freeze-out curve. We discuss indications of a similar effect in SPS and RHIC data, and propose a method to recover the bulk hadron freeze-out conditions.
Key concepts: Hadronization, Hadron, Cascade, Physics, Nuclear physics, Large Hadron Collider, Omega, Particle physics