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Dynamical initialization and hydrodynamic modeling of relativistic heavy-ion collisions

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arxiv 1807.05141 v1 pith:U5DWQEPX submitted 2018-07-13 nucl-th hep-phnucl-ex

classification nucl-thhep-phnucl-ex
keywords initialmodelcollisionsdynamicalenergyhydrodynamicinitializationrhic
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We present a fully three-dimensional model providing initial conditions for energy and conserved charge density distributions in heavy ion collisions at RHIC Beam Energy Scan (BES) collision energies. The model includes the dynamical deceleration of participating nucleons or valence quarks. It provides a realistic estimation of the initial baryon stopping during the early stage of collisions. We also present the implementation of the model with 3+1 dimensional hydrodynamics, which involves the addition of source terms that deposit energy and net-baryon densities produced by the initial state model at proper times greater than the initial time for the hydrodynamic simulation. The importance of this dynamical initialization stage on hadronic flow observables at the RHIC BES is quantified.

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  1. Hydro+ in Action: Understanding the Out-of-Equilibrium Dynamics Near a Critical Point in the QCD Phase Diagram

    hep-ph 2019-08 conditional novelty 6.0 of 10

    First numerical implementation of Hydro+ in an expanding fireball shows critical fluctuations lag behind equilibrium, advect outward, and feed back only mildly on the bulk flow in this simplified model.

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