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One fluid might not rule them all

<!--HTML-->In this talk, we present our recent investigations on hydrodynamic collectivity in high-multiplicity proton--proton collisions at 13 TeV using the VISHNU hybrid model with different initial condition models, called HIJING, super-MC and TRENTo. We find that with carefully tuned param...

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Autor principal: Song, Huichao
Lenguaje:eng
Publicado: 2021
Materias:
Acceso en línea:http://cds.cern.ch/record/2749457
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author Song, Huichao
author_facet Song, Huichao
author_sort Song, Huichao
collection CERN
description <!--HTML-->In this talk, we present our recent investigations on hydrodynamic collectivity in high-multiplicity proton--proton collisions at 13 TeV using the VISHNU hybrid model with different initial condition models, called HIJING, super-MC and TRENTo. We find that with carefully tuned parameters, hydrodynamic simulations can give reasonable descriptions of the measured two-particle correlations. However, multi-particle single and mixed harmonics cumulants can not be described by hydrodynamics with these three initial conditions, even for the signs in a few cases. Further studies show that the non-linear response plays an important role in the hydrodynamic expansion of the p--p systems. Such an effect can change c2{4} from a negative value in the initial state to a positive value in the final state. The failure of the hydrodynamic description of multi-particle cumulant triggers the questions on whether the hydrodynamics can rule all collision systems, including p--p collisions at the LHC.
id cern-2749457
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2021
record_format invenio
spelling cern-27494572022-11-02T22:26:19Zhttp://cds.cern.ch/record/2749457engSong, HuichaoOne fluid might not rule them allInitial Stages 2021Conferences<!--HTML-->In this talk, we present our recent investigations on hydrodynamic collectivity in high-multiplicity proton--proton collisions at 13 TeV using the VISHNU hybrid model with different initial condition models, called HIJING, super-MC and TRENTo. We find that with carefully tuned parameters, hydrodynamic simulations can give reasonable descriptions of the measured two-particle correlations. However, multi-particle single and mixed harmonics cumulants can not be described by hydrodynamics with these three initial conditions, even for the signs in a few cases. Further studies show that the non-linear response plays an important role in the hydrodynamic expansion of the p--p systems. Such an effect can change c2{4} from a negative value in the initial state to a positive value in the final state. The failure of the hydrodynamic description of multi-particle cumulant triggers the questions on whether the hydrodynamics can rule all collision systems, including p--p collisions at the LHC.oai:cds.cern.ch:27494572021
spellingShingle Conferences
Song, Huichao
One fluid might not rule them all
title One fluid might not rule them all
title_full One fluid might not rule them all
title_fullStr One fluid might not rule them all
title_full_unstemmed One fluid might not rule them all
title_short One fluid might not rule them all
title_sort one fluid might not rule them all
topic Conferences
url http://cds.cern.ch/record/2749457
work_keys_str_mv AT songhuichao onefluidmightnotrulethemall
AT songhuichao initialstages2021