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Multiplicity dependence of (multi-)strange baryons in the canonical ensemble with phase shift corrections

The increase in strangeness production with charged particle multiplicity, as seen by the ALICE collaboration at CERN in p-p, p-Pb, and Pb-Pb collisions, is investigated in the hadron resonance gas model taking into account interactions among hadrons using S-matrix corrections based on known phase s...

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Autores principales: Cleymans, Jean, Lo, Pok Man, Redlich, Krzysztof, Sharma, Natasha
Lenguaje:eng
Publicado: 2020
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevC.103.014904
http://cds.cern.ch/record/2730214
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author Cleymans, Jean
Lo, Pok Man
Redlich, Krzysztof
Sharma, Natasha
author_facet Cleymans, Jean
Lo, Pok Man
Redlich, Krzysztof
Sharma, Natasha
author_sort Cleymans, Jean
collection CERN
description The increase in strangeness production with charged particle multiplicity, as seen by the ALICE collaboration at CERN in p-p, p-Pb, and Pb-Pb collisions, is investigated in the hadron resonance gas model taking into account interactions among hadrons using S-matrix corrections based on known phase shift analyses. Strangeness conservation is taken into account in the framework of the canonical strangeness ensemble. A very good description is obtained for the variation of the strangeness content in the final state as a function of the number of charged hadrons in the midrapidity region using the same fixed temperature value as obtained in the most central Pb-Pb collisions and with a fixed strangeness suppression factor γs=1. It is shown that the number of charged hadrons is linearly proportional to the volume of the system. For small multiplicities the canonical ensemble with local strangeness conservation restricted to midrapidity leads to a stronger suppression of (multi)strange baryons than seen in the data. This is compensated by introducing a global conservation of strangeness in the whole phase-space which is parametrized by the canonical correlation volume larger than the fireball volume at the midrapidity. The results on comparing the hadron resonance gas model with and without S-matrix corrections, are presented in detail. It is shown that the interactions introduced by the phase shift analysis via the S-matrix formalism are essential for a better description of the yields data.
id cern-2730214
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
record_format invenio
spelling cern-27302142021-02-27T05:23:57Zdoi:10.1103/PhysRevC.103.014904http://cds.cern.ch/record/2730214engCleymans, JeanLo, Pok ManRedlich, KrzysztofSharma, NatashaMultiplicity dependence of (multi-)strange baryons in the canonical ensemble with phase shift correctionshep-exParticle Physics - Experimenthep-phParticle Physics - PhenomenologyThe increase in strangeness production with charged particle multiplicity, as seen by the ALICE collaboration at CERN in p-p, p-Pb, and Pb-Pb collisions, is investigated in the hadron resonance gas model taking into account interactions among hadrons using S-matrix corrections based on known phase shift analyses. Strangeness conservation is taken into account in the framework of the canonical strangeness ensemble. A very good description is obtained for the variation of the strangeness content in the final state as a function of the number of charged hadrons in the midrapidity region using the same fixed temperature value as obtained in the most central Pb-Pb collisions and with a fixed strangeness suppression factor γs=1. It is shown that the number of charged hadrons is linearly proportional to the volume of the system. For small multiplicities the canonical ensemble with local strangeness conservation restricted to midrapidity leads to a stronger suppression of (multi)strange baryons than seen in the data. This is compensated by introducing a global conservation of strangeness in the whole phase-space which is parametrized by the canonical correlation volume larger than the fireball volume at the midrapidity. The results on comparing the hadron resonance gas model with and without S-matrix corrections, are presented in detail. It is shown that the interactions introduced by the phase shift analysis via the S-matrix formalism are essential for a better description of the yields data.The increase in strangeness production with charged particle multiplicity, as seen by the ALICE collaboration at CERN in p-p, p-Pb and Pb-Pb collisions, is investigated in the hadron resonance gas model taking into account interactions among hadrons using S-matrix corrections based on known phase shift analyses. Strangeness conservation is taken into account in the framework of the canonical strangeness ensemble. A very good description is obtained for the variation of the strangeness content in the final state as a function of the number of charged hadrons in the mid-rapidity region using the same fixed temperature value as obtained in the most central Pb-Pb collisions. It is shown that the number of charged hadrons is linearly proportional to the volume of the system. For small multiplicities the canonical ensemble with local strangeness conservation restricted to mid-rapidity leads to a stronger suppression of (multi-)strange baryons than seen in the data. This is compensated by introducing a global conservation of strangeness in the whole phase-space which is parameterized by the canonical correlation volume larger than the fireball volume at the mid-rapidity. The results on comparing the hadron resonance gas model with and without S-matrix corrections, are presented in detail. It is shown that the interactions introduced by the phase shift analysis via the S-matrix formalism are essential for a better description of the yields data.arXiv:2009.04844CERN-TH-2020-141oai:cds.cern.ch:27302142020-09-10
spellingShingle hep-ex
Particle Physics - Experiment
hep-ph
Particle Physics - Phenomenology
Cleymans, Jean
Lo, Pok Man
Redlich, Krzysztof
Sharma, Natasha
Multiplicity dependence of (multi-)strange baryons in the canonical ensemble with phase shift corrections
title Multiplicity dependence of (multi-)strange baryons in the canonical ensemble with phase shift corrections
title_full Multiplicity dependence of (multi-)strange baryons in the canonical ensemble with phase shift corrections
title_fullStr Multiplicity dependence of (multi-)strange baryons in the canonical ensemble with phase shift corrections
title_full_unstemmed Multiplicity dependence of (multi-)strange baryons in the canonical ensemble with phase shift corrections
title_short Multiplicity dependence of (multi-)strange baryons in the canonical ensemble with phase shift corrections
title_sort multiplicity dependence of (multi-)strange baryons in the canonical ensemble with phase shift corrections
topic hep-ex
Particle Physics - Experiment
hep-ph
Particle Physics - Phenomenology
url https://dx.doi.org/10.1103/PhysRevC.103.014904
http://cds.cern.ch/record/2730214
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AT lopokman multiplicitydependenceofmultistrangebaryonsinthecanonicalensemblewithphaseshiftcorrections
AT redlichkrzysztof multiplicitydependenceofmultistrangebaryonsinthecanonicalensemblewithphaseshiftcorrections
AT sharmanatasha multiplicitydependenceofmultistrangebaryonsinthecanonicalensemblewithphaseshiftcorrections