van der Waals Interactions in Hadron Resonance Gas: From Nuclear Matter to Lattice QCD

Physical Review Letters
Volodymyr VovchenkoHorst Stoecker

Abstract

An extension of the ideal hadron resonance gas (HRG) model is constructed which includes the attractive and repulsive van der Waals (VDW) interactions between baryons. This VDW-HRG model yields the nuclear liquid-gas transition at low temperatures and high baryon densities. The VDW parameters a and b are fixed by the ground state properties of nuclear matter, and the temperature dependence of various thermodynamic observables at zero chemical potential are calculated within the VDW-HRG model. Compared to the ideal HRG model, the inclusion of VDW interactions between baryons leads to a qualitatively different behavior of second and higher moments of fluctuations of conserved charges, in particular in the so-called crossover region T∼140-190  MeV. For many observables this behavior resembles closely the results obtained from lattice QCD simulations. This hadronic model also predicts nontrivial behavior of net-baryon fluctuations in the region of phase diagram probed by heavy-ion collision experiments. These results imply that VDW interactions play a crucial role in the thermodynamics of hadron gas. Thus, the commonly performed comparisons of the ideal HRG model with the lattice and heavy-ion data may lead to misconceptions and mi...Continue Reading

References

Sep 28, 2010·Physical Review Letters·M M AggarwalUNKNOWN STAR Collaboration
Dec 12, 2012·Physical Review Letters·A BazavovM Wagner
Sep 10, 2013·Physical Review Letters·A BazavovM Wagner
Dec 3, 2013·Physical Review Letters·Rene BellwiedClaudia Ratti
Feb 4, 2014·Physical Review Letters·L AdamczykUNKNOWN STAR Collaboration

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