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Inclusive and effective bulk viscosities in the hadron gas

  • We estimate the temperature dependence of the bulk viscosity in a relativistic hadron gas. Employing the Green–Kubo formalism in the SMASH (Simulating Many Accelerated Strongly-interacting Hadrons) transport approach, we study different hadronic systems in increasing order of complexity. We analyze the (in)validity of the single exponential relaxation ansatz for the bulk-channel correlation function and the strong influence of the resonances and their lifetimes. We discuss the difference between the inclusive bulk viscosity of an equilibrated, long-lived system, and the effective bulk viscosity of a short-lived mixture like the hadronic phase of relativistic heavy-ion collisions, where the processes whose inverse relaxation rate are larger than the fireball duration are excluded from the analysis. This clarifies the differences between previous approaches which computed the bulk viscosity including/excluding the very slow processes in the hadron gas. We compare our final results with previous hadron gas calculations and confirm a decreasing trend of the inclusive bulk viscosity over entropy density as temperature increases, whereas the effective bulk viscosity to entropy ratio, while being lower than the inclusive one, shows no strong dependence to temperature.

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Verfasserangaben:Jean-Bernard RoseORCiDGND, Juan M. Torres-RinconORCiDGND, Hannah ElfnerORCiDGND
URN:urn:nbn:de:hebis:30:3-631810
DOI:https://doi.org/10.1088/1361-6471/abbc5c
ISSN:1361-6471
ISSN:0954-3899
Titel des übergeordneten Werkes (Englisch):Journal of physics. G
Verlag:IOP Publ.
Verlagsort:Bristol
Dokumentart:Wissenschaftlicher Artikel
Sprache:Englisch
Datum der Veröffentlichung (online):02.12.2020
Datum der Erstveröffentlichung:02.12.2020
Veröffentlichende Institution:Universitätsbibliothek Johann Christian Senckenberg
Datum der Freischaltung:02.08.2023
Freies Schlagwort / Tag:Monte-Carlo simulations; bulk viscosity; hadron gas; heavy-ion collisions
Jahrgang:48
Ausgabe / Heft:art. 015005
Aufsatznummer:015005
Seitenzahl:32
Erste Seite:1
Letzte Seite:31
Bemerkung:
Funded by the Deutsche Forschungsgemeinschaft (DFG, German Research Foundation)—Project number 315477589—TRR 211.
Bemerkung:
This work was supported by the Helmholtz International Center for the Facility for Antiproton and Ion Research (HIC for FAIR) within the framework of the Landes-Offensive zur Entwicklung Wissenschaftlich-Oekonomischer Exzellenz (LOEWE) program launched by the State of Hesse.
HeBIS-PPN:512573786
Institute:Physik / Physik
Wissenschaftliche Zentren und koordinierte Programme / Frankfurt Institute for Advanced Studies (FIAS)
DDC-Klassifikation:5 Naturwissenschaften und Mathematik / 53 Physik / 530 Physik
Sammlungen:Universitätspublikationen
Lizenz (Deutsch):License LogoCreative Commons - CC BY - Namensnennung 4.0 International