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Optimal conditions for exploring high-density baryonic matter

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arxiv hep-ph/0607065 v1 pith:5VDASMHF submitted 2006-07-06 hep-ph

classification hep-ph
keywords densityenergyfreeze-outmaximumrhobaboveanalysisapparent
verification ladder T0 review T1 audit T2 compute T3 formal
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Using simple parametrizations of the thermodynamic freeze-out parameters extracted from the data over a wide beam-energy range, we reexpress the hadronic freeze-out line in terms of the underlying dynamical quantities, the net baryon density rhoB and the energy density epsilon, which are subject to local conservation laws. This analysis makes it apparent that rhoB exhibits a maximum as the collision energy is decreased. This maximum freeze-out density has muB=400-500 MeV, which is above the critical value, and it is reached for a fixed-target bombarding energy of 20-30 GeV/A.

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Cited by 2 Pith papers

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  1. Space-time regions of high baryon density and baryon stopping in heavy-ion collisions

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    3FD hydrodynamics predicts larger and longer-lived regions of dense baryon matter in Au+Au collisions at 3–19.6 GeV than JAM transport, with V4(3n0) decreasing monotonically with energy.

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    Simulations show that a new time-of-flight neutron detector with 121 scintillator cells per layer and two layout options can identify and reconstruct neutrons from Bi+Bi collisions at 3A GeV with about 70% purity and ...

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