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Study of chemical equilibrium in nucleus-nucleus collisions at AGS and SPS energies

We present a detailed study of chemical freeze-out in nucleus-nucleus collisions at beam energies of 11.6, 30, 40, 80 and 158A GeV. By analyzing hadronic multiplicities within the statistical hadronization approach, we have studied the strangeness production as a function of centre of mass energy an...

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Detalles Bibliográficos
Autores principales: Becattini, F, Gazdzicki, M, Keränen, A, Manninen, J, Stock, Reinhard
Lenguaje:eng
Publicado: 2003
Materias:
Acceso en línea:http://cds.cern.ch/record/646670
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author Becattini, F
Gazdzicki, M
Keränen, A
Manninen, J
Stock, Reinhard
author_facet Becattini, F
Gazdzicki, M
Keränen, A
Manninen, J
Stock, Reinhard
author_sort Becattini, F
collection CERN
description We present a detailed study of chemical freeze-out in nucleus-nucleus collisions at beam energies of 11.6, 30, 40, 80 and 158A GeV. By analyzing hadronic multiplicities within the statistical hadronization approach, we have studied the strangeness production as a function of centre of mass energy and of the parameters of the source. We have tested and compared different versions of the statistical model, with special emphasis on possible explanations of the observed strangeness hadronic phase space under-saturation. We show that, in this energy range, the use of hadron yields at midrapidity instead of in full phase space artificially enhances strangeness production and could lead to incorrect conclusions as far as the occurrence of full chemical equilibrium is concerned. In addition to the basic model with an extra strange quark non-equilibrium parameter, we have tested three more schemes: a two-component model superimposing hadrons coming out of single nucleon-nucleon interactions to those emerging from large fireballs at equilibrium, a model with local strangeness neutrality and a model with strange and light quark non-equilibrium parameters. The behaviour of the source parameters as a function of colliding system and collision energy is studied. The description of strangeness production entails a non-monotonic energy dependence of strangeness saturation parameter gamma_S with a maximum around 30A GeV. We also present predictions of the production rates of still unmeasured hadrons including the newly discovered Theta^+(1540) pentaquark baryon.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2003
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spelling cern-6466702019-09-30T06:29:59Zhttp://cds.cern.ch/record/646670engBecattini, FGazdzicki, MKeränen, AManninen, JStock, ReinhardStudy of chemical equilibrium in nucleus-nucleus collisions at AGS and SPS energiesParticle Physics - PhenomenologyWe present a detailed study of chemical freeze-out in nucleus-nucleus collisions at beam energies of 11.6, 30, 40, 80 and 158A GeV. By analyzing hadronic multiplicities within the statistical hadronization approach, we have studied the strangeness production as a function of centre of mass energy and of the parameters of the source. We have tested and compared different versions of the statistical model, with special emphasis on possible explanations of the observed strangeness hadronic phase space under-saturation. We show that, in this energy range, the use of hadron yields at midrapidity instead of in full phase space artificially enhances strangeness production and could lead to incorrect conclusions as far as the occurrence of full chemical equilibrium is concerned. In addition to the basic model with an extra strange quark non-equilibrium parameter, we have tested three more schemes: a two-component model superimposing hadrons coming out of single nucleon-nucleon interactions to those emerging from large fireballs at equilibrium, a model with local strangeness neutrality and a model with strange and light quark non-equilibrium parameters. The behaviour of the source parameters as a function of colliding system and collision energy is studied. The description of strangeness production entails a non-monotonic energy dependence of strangeness saturation parameter gamma_S with a maximum around 30A GeV. We also present predictions of the production rates of still unmeasured hadrons including the newly discovered Theta^+(1540) pentaquark baryon.hep-ph/0310049oai:cds.cern.ch:6466702003-10-03
spellingShingle Particle Physics - Phenomenology
Becattini, F
Gazdzicki, M
Keränen, A
Manninen, J
Stock, Reinhard
Study of chemical equilibrium in nucleus-nucleus collisions at AGS and SPS energies
title Study of chemical equilibrium in nucleus-nucleus collisions at AGS and SPS energies
title_full Study of chemical equilibrium in nucleus-nucleus collisions at AGS and SPS energies
title_fullStr Study of chemical equilibrium in nucleus-nucleus collisions at AGS and SPS energies
title_full_unstemmed Study of chemical equilibrium in nucleus-nucleus collisions at AGS and SPS energies
title_short Study of chemical equilibrium in nucleus-nucleus collisions at AGS and SPS energies
title_sort study of chemical equilibrium in nucleus-nucleus collisions at ags and sps energies
topic Particle Physics - Phenomenology
url http://cds.cern.ch/record/646670
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AT gazdzickim studyofchemicalequilibriuminnucleusnucleuscollisionsatagsandspsenergies
AT keranena studyofchemicalequilibriuminnucleusnucleuscollisionsatagsandspsenergies
AT manninenj studyofchemicalequilibriuminnucleusnucleuscollisionsatagsandspsenergies
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