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Strange Particle Production from SIS to LHC

A review of meson emission in heavy ion collisions at incident energies from SIS up to collider energies is presented. A statistical model assuming chemical equilibrium and local strangeness conservation (i.e. strangeness conservation per collision) explains most of the observed features. Emphasis i...

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Detalles Bibliográficos
Autores principales: Oeschler, H, Cleymans, J, Redlich, Krzysztof
Lenguaje:eng
Publicado: 2001
Materias:
Acceso en línea:https://dx.doi.org/10.1007/BF02707027
http://cds.cern.ch/record/531393
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author Oeschler, H
Cleymans, J
Redlich, Krzysztof
author_facet Oeschler, H
Cleymans, J
Redlich, Krzysztof
author_sort Oeschler, H
collection CERN
description A review of meson emission in heavy ion collisions at incident energies from SIS up to collider energies is presented. A statistical model assuming chemical equilibrium and local strangeness conservation (i.e. strangeness conservation per collision) explains most of the observed features. Emphasis is put onto the study of $K^+$ and $K^-$ emission at low incident energies. In the framework of this statistical model it is shown that the experimentally observed equality of $K^+$ and $K^-$ rates at ``threshold-corrected'' energies $\sqrt{s} - \sqrt{s_{th}}$ is due to a crossing of two excitation functions. Furthermore, the independence of the $K^+$ to $K^-$ ratio on the number of participating nucleons observed between SIS and RHIC is consistent with this model. It is demonstrated that the $K^-$ production at SIS energies occurs predominantly via strangeness exchange and this channel is approaching chemical equilibrium. The observed maximum in the $K^+/\pi^+$ excitation function is also seen in the ratio of strange to non-strange particle production. The appearance of this maximum around 30 $A\cdot$GeV is due to the energy dependence of the chemical freeze-out parameters $T$ and $\mu_B$.
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institution Organización Europea para la Investigación Nuclear
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spelling cern-5313932019-09-30T06:29:59Zdoi:10.1007/BF02707027http://cds.cern.ch/record/531393engOeschler, HCleymans, JRedlich, KrzysztofStrange Particle Production from SIS to LHCNuclear Physics - ExperimentA review of meson emission in heavy ion collisions at incident energies from SIS up to collider energies is presented. A statistical model assuming chemical equilibrium and local strangeness conservation (i.e. strangeness conservation per collision) explains most of the observed features. Emphasis is put onto the study of $K^+$ and $K^-$ emission at low incident energies. In the framework of this statistical model it is shown that the experimentally observed equality of $K^+$ and $K^-$ rates at ``threshold-corrected'' energies $\sqrt{s} - \sqrt{s_{th}}$ is due to a crossing of two excitation functions. Furthermore, the independence of the $K^+$ to $K^-$ ratio on the number of participating nucleons observed between SIS and RHIC is consistent with this model. It is demonstrated that the $K^-$ production at SIS energies occurs predominantly via strangeness exchange and this channel is approaching chemical equilibrium. The observed maximum in the $K^+/\pi^+$ excitation function is also seen in the ratio of strange to non-strange particle production. The appearance of this maximum around 30 $A\cdot$GeV is due to the energy dependence of the chemical freeze-out parameters $T$ and $\mu_B$.nucl-ex/0112005IKDA-2001-24oai:cds.cern.ch:5313932001-12-17
spellingShingle Nuclear Physics - Experiment
Oeschler, H
Cleymans, J
Redlich, Krzysztof
Strange Particle Production from SIS to LHC
title Strange Particle Production from SIS to LHC
title_full Strange Particle Production from SIS to LHC
title_fullStr Strange Particle Production from SIS to LHC
title_full_unstemmed Strange Particle Production from SIS to LHC
title_short Strange Particle Production from SIS to LHC
title_sort strange particle production from sis to lhc
topic Nuclear Physics - Experiment
url https://dx.doi.org/10.1007/BF02707027
http://cds.cern.ch/record/531393
work_keys_str_mv AT oeschlerh strangeparticleproductionfromsistolhc
AT cleymansj strangeparticleproductionfromsistolhc
AT redlichkrzysztof strangeparticleproductionfromsistolhc