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Multiplicity scaling in ideal and viscous hydrodynamics

Using numerical results from ideal and viscous relativistic hydrodynamic simulations with three different equations of state, for Au+Au and Cu+Cu collisions at different centralities and initial energy densities, we explore the dependence of the eccentricity-scaled elliptic flow, v_2/epsilon, and th...

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Autores principales: Song, Huichao, Heinz, Ulrich W
Lenguaje:eng
Publicado: 2008
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevC.78.024902
http://cds.cern.ch/record/1104397
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author Song, Huichao
Heinz, Ulrich W
author_facet Song, Huichao
Heinz, Ulrich W
author_sort Song, Huichao
collection CERN
description Using numerical results from ideal and viscous relativistic hydrodynamic simulations with three different equations of state, for Au+Au and Cu+Cu collisions at different centralities and initial energy densities, we explore the dependence of the eccentricity-scaled elliptic flow, v_2/epsilon, and the produced entropy fraction, Delta S/S_0, on the final charged hadron multiplicity density dN_ch/dy per unit transverse overlap area S, (1/S)(dN_ch/dy). The viscous hydrodynamic simulations are performed with two different versions of the Israel-Stewart kinetic evolution equations, and in each case we investigate the dependence of the physical observables on the kinetic relaxation time. We find approximate scaling of v_2/epsilon and Delta S/S_0 with (1/S)(dN_ch/dy), with scaling functions that depend on the EOS and, in particular, on the value of the specific shear viscosity eta/s. Small scaling violations are seen even in ideal hydrodynamics, caused by a breaking of the scale invariance of ideal fluid dynamics by the freeze-out condition. Viscous hydrodynamics shows somewhat larger scale-breaking effects that increase with increasing eta/s and decreasing system size and initial energy density. We propose to use precision studies of these scaling violations to help constrain the shear viscosity eta/s of the quark-gluon plasma created in relativistic heavy ion collisions.
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spelling cern-11043972019-09-30T06:29:59Zdoi:10.1103/PhysRevC.78.024902http://cds.cern.ch/record/1104397engSong, HuichaoHeinz, Ulrich WMultiplicity scaling in ideal and viscous hydrodynamicsNuclear Physics - TheoryUsing numerical results from ideal and viscous relativistic hydrodynamic simulations with three different equations of state, for Au+Au and Cu+Cu collisions at different centralities and initial energy densities, we explore the dependence of the eccentricity-scaled elliptic flow, v_2/epsilon, and the produced entropy fraction, Delta S/S_0, on the final charged hadron multiplicity density dN_ch/dy per unit transverse overlap area S, (1/S)(dN_ch/dy). The viscous hydrodynamic simulations are performed with two different versions of the Israel-Stewart kinetic evolution equations, and in each case we investigate the dependence of the physical observables on the kinetic relaxation time. We find approximate scaling of v_2/epsilon and Delta S/S_0 with (1/S)(dN_ch/dy), with scaling functions that depend on the EOS and, in particular, on the value of the specific shear viscosity eta/s. Small scaling violations are seen even in ideal hydrodynamics, caused by a breaking of the scale invariance of ideal fluid dynamics by the freeze-out condition. Viscous hydrodynamics shows somewhat larger scale-breaking effects that increase with increasing eta/s and decreasing system size and initial energy density. We propose to use precision studies of these scaling violations to help constrain the shear viscosity eta/s of the quark-gluon plasma created in relativistic heavy ion collisions.arXiv:0805.1756CERN-PH-TH-2008-100oai:cds.cern.ch:11043972008-05-14
spellingShingle Nuclear Physics - Theory
Song, Huichao
Heinz, Ulrich W
Multiplicity scaling in ideal and viscous hydrodynamics
title Multiplicity scaling in ideal and viscous hydrodynamics
title_full Multiplicity scaling in ideal and viscous hydrodynamics
title_fullStr Multiplicity scaling in ideal and viscous hydrodynamics
title_full_unstemmed Multiplicity scaling in ideal and viscous hydrodynamics
title_short Multiplicity scaling in ideal and viscous hydrodynamics
title_sort multiplicity scaling in ideal and viscous hydrodynamics
topic Nuclear Physics - Theory
url https://dx.doi.org/10.1103/PhysRevC.78.024902
http://cds.cern.ch/record/1104397
work_keys_str_mv AT songhuichao multiplicityscalinginidealandviscoushydrodynamics
AT heinzulrichw multiplicityscalinginidealandviscoushydrodynamics