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Temperature dependence of $\eta/s$: uncertainties from the equation of state

We perform a global model-to-data comparison on Au+Au collisions at $\sqrt{s_{NN}}=200$ GeV and Pb+Pb collisions at $2.76$ TeV and $5.02$ TeV, using a 2+1D hydrodynamics model with the EKRT initial state and a shear viscosity over entropy density ratio $(\eta/s)(T)$ with a linear $T$ dependence. To...

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Detalles Bibliográficos
Autores principales: Auvinen, Jussi, Eskola, Kari J., Huovinen, Pasi, Niemi, Harri, Paatelainen, Risto, Petreczky, Péter
Lenguaje:eng
Publicado: SISSA 2018
Materias:
Acceso en línea:https://dx.doi.org/10.22323/1.336.0135
http://cds.cern.ch/record/2675861
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author Auvinen, Jussi
Eskola, Kari J.
Huovinen, Pasi
Niemi, Harri
Paatelainen, Risto
Petreczky, Péter
author_facet Auvinen, Jussi
Eskola, Kari J.
Huovinen, Pasi
Niemi, Harri
Paatelainen, Risto
Petreczky, Péter
author_sort Auvinen, Jussi
collection CERN
description We perform a global model-to-data comparison on Au+Au collisions at $\sqrt{s_{NN}}=200$ GeV and Pb+Pb collisions at $2.76$ TeV and $5.02$ TeV, using a 2+1D hydrodynamics model with the EKRT initial state and a shear viscosity over entropy density ratio $(\eta/s)(T)$ with a linear $T$ dependence. To quantify the amount of uncertainty due to the choice of the equation of state (EoS), we compare analysis results based on four different EoSs: the well known $s95p$ parametrisation, an updated parametrisation based on the same list of particles in hadron resonance gas, but using recent lattice results for the partonic part of the EoS, and two new parametrisations based on the Particle Data Group 2016 particle list and the recent lattice results. We find that the choice of the EoS does affect the favoured minimum value of $\eta/s$, although within the confidence limits of the analysis. On the other hand, our analysis hardly constrains the temperature dependence of $\eta/s$, no matter the EoS.
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spelling cern-26758612019-10-04T16:54:22Zdoi:10.22323/1.336.0135http://cds.cern.ch/record/2675861engAuvinen, JussiEskola, Kari J.Huovinen, PasiNiemi, HarriPaatelainen, RistoPetreczky, PéterTemperature dependence of $\eta/s$: uncertainties from the equation of statenucl-thNuclear Physics - Theoryhep-phParticle Physics - PhenomenologyWe perform a global model-to-data comparison on Au+Au collisions at $\sqrt{s_{NN}}=200$ GeV and Pb+Pb collisions at $2.76$ TeV and $5.02$ TeV, using a 2+1D hydrodynamics model with the EKRT initial state and a shear viscosity over entropy density ratio $(\eta/s)(T)$ with a linear $T$ dependence. To quantify the amount of uncertainty due to the choice of the equation of state (EoS), we compare analysis results based on four different EoSs: the well known $s95p$ parametrisation, an updated parametrisation based on the same list of particles in hadron resonance gas, but using recent lattice results for the partonic part of the EoS, and two new parametrisations based on the Particle Data Group 2016 particle list and the recent lattice results. We find that the choice of the EoS does affect the favoured minimum value of $\eta/s$, although within the confidence limits of the analysis. On the other hand, our analysis hardly constrains the temperature dependence of $\eta/s$, no matter the EoS.SISSAarXiv:1811.01792oai:cds.cern.ch:26758612018-11-05
spellingShingle nucl-th
Nuclear Physics - Theory
hep-ph
Particle Physics - Phenomenology
Auvinen, Jussi
Eskola, Kari J.
Huovinen, Pasi
Niemi, Harri
Paatelainen, Risto
Petreczky, Péter
Temperature dependence of $\eta/s$: uncertainties from the equation of state
title Temperature dependence of $\eta/s$: uncertainties from the equation of state
title_full Temperature dependence of $\eta/s$: uncertainties from the equation of state
title_fullStr Temperature dependence of $\eta/s$: uncertainties from the equation of state
title_full_unstemmed Temperature dependence of $\eta/s$: uncertainties from the equation of state
title_short Temperature dependence of $\eta/s$: uncertainties from the equation of state
title_sort temperature dependence of $\eta/s$: uncertainties from the equation of state
topic nucl-th
Nuclear Physics - Theory
hep-ph
Particle Physics - Phenomenology
url https://dx.doi.org/10.22323/1.336.0135
http://cds.cern.ch/record/2675861
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