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      Effects of initial flow velocity fluctuation in event-by-event (3+1)D hydrodynamics

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          Abstract

          Hadron spectra and elliptic flow in high-energy heavy-ion collisions are studied within a (3+1)D ideal hydrodynamic model with fluctuating initial conditions given by the AMPT Monte Carlo model. Results from event-by-event simulations are compared with experimental data at both RHIC and LHC energies. Fluctuations in the initial energy density come from not only the number of coherent soft interactions of overlapping nucleons but also incoherent semi-hard parton scatterings in each binary nucleon collision. Mini-jets from semi-hard parton scatterings are assumed to be locally thermalized through a Gaussian smearing and give rise to non-vanishing initial local flow velocities. Fluctuations in the initial flow velocities lead to harder transverse momentum spectra of final hadrons due to non-vanishing initial radial flow velocities. Initial fluctuations in rapidity distributions lead to expanding hot spots in the longitudinal direction and are shown to cause a sizable reduction of final hadron elliptic flow at large transverse momenta.

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          Anisotropy as a signature of transverse collective flow

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            Single-particle distribution in the hydrodynamic and statistical thermodynamic models of multiparticle production

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              Viscosity Information from Relativistic Nuclear Collisions: How Perfect is the Fluid Observed at RHIC?

              Relativistic viscous hydrodynamic fits to RHIC data on the centrality dependence of multiplicity, transverse and elliptic flow for sqrt{s}=200 GeV Au+Au collisions are presented. For Glauber-type initial conditions, while data on integrated v_2 is consistent with a ratio of viscosity over entropy density up to eta/s=0.16, data on minimum bias v_2 seems to favor a much smaller viscosity over entropy ratio, below the bound from the AdS/CFT conjecture. Some caveats on this result are discussed.
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                Author and article information

                Journal
                22 May 2012
                2012-09-19
                Article
                10.1103/PhysRevC.86.024911
                1205.5019
                09f872b0-89fb-49eb-a39e-5fd512838ac7

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

                History
                Custom metadata
                NT-LBL-12-011
                Phys.Rev. C86 (2012) 024911
                17 pages in RevTex, 18 figures, final version published in PRC
                nucl-th hep-ph nucl-ex

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