Equation of state for QCD matter in a quasiparticle model
R. Schulze, B. Kampfer (Forschungszentrum Dresden Rossendorf &, Dresden, Tech. U.)

TL;DR
This paper develops a quasiparticle model for QCD matter that connects lattice QCD results to conditions in heavy-ion collisions, emphasizing the impact of collective modes and damping on the equation of state.
Contribution
It introduces a phenomenological quasiparticle model incorporating collective modes and damping effects to better describe QCD matter's equation of state.
Findings
Collective modes significantly influence the equation of state.
Damping effects alter the thermodynamic properties of QCD matter.
The model effectively maps lattice results to high-density regimes.
Abstract
A phenomenological QCD quasiparticle model provides a means to map lattice QCD results to regions relevant for a variety of heavy-ion collision experiments at larger baryon density. We report on effects of collectives modes and damping on the equation of state.
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