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Parton cascade description of relativistic heavy-ion collisions at CERN SPS energies?

We examine Pb+Pb collisions at CERN SPS energy 158 A GeV, by employing the earlier developed and recently refined parton-cascade/cluster-hadronization model and its Monte Carlo implementation. This space-time model involves the dynamical interplay of perturbative QCD parton production and evolution,...

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Detalles Bibliográficos
Autores principales: Geiger, Klaus, Kumar Srivastava, Dinesh
Lenguaje:eng
Publicado: 1997
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevC.56.2718
http://cds.cern.ch/record/327107
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author Geiger, Klaus
Kumar Srivastava, Dinesh
author_facet Geiger, Klaus
Kumar Srivastava, Dinesh
author_sort Geiger, Klaus
collection CERN
description We examine Pb+Pb collisions at CERN SPS energy 158 A GeV, by employing the earlier developed and recently refined parton-cascade/cluster-hadronization model and its Monte Carlo implementation. This space-time model involves the dynamical interplay of perturbative QCD parton production and evolution, with non-perturbative parton-cluster formation and hadron production through cluster decays. Using computer simulations, we are able to follow the entwined time-evolution of parton and hadron degrees of freedom in both position and momentum space, from the instant of nuclear overlap to the final yield of particles. We present and discuss results for the multiplicity distributions, which agree well with the measured data from the CERN SPS, including those for K mesons. The transverse momentum distributions of the produced hadrons are also found to be in good agreement with the preliminary data measured by the NA49 and the WA98 collaboration for the collision of lead nuclei at the CERN SPS. The analysis of the time evolution of transverse energy deposited in the collision zone and the energy density suggests an existence of partonic matter for a time of more than 5 fm.
id cern-327107
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1997
record_format invenio
spelling cern-3271072020-03-12T03:47:00Zdoi:10.1103/PhysRevC.56.2718http://cds.cern.ch/record/327107engGeiger, KlausKumar Srivastava, DineshParton cascade description of relativistic heavy-ion collisions at CERN SPS energies?Nuclear Physics - TheoryWe examine Pb+Pb collisions at CERN SPS energy 158 A GeV, by employing the earlier developed and recently refined parton-cascade/cluster-hadronization model and its Monte Carlo implementation. This space-time model involves the dynamical interplay of perturbative QCD parton production and evolution, with non-perturbative parton-cluster formation and hadron production through cluster decays. Using computer simulations, we are able to follow the entwined time-evolution of parton and hadron degrees of freedom in both position and momentum space, from the instant of nuclear overlap to the final yield of particles. We present and discuss results for the multiplicity distributions, which agree well with the measured data from the CERN SPS, including those for K mesons. The transverse momentum distributions of the produced hadrons are also found to be in good agreement with the preliminary data measured by the NA49 and the WA98 collaboration for the collision of lead nuclei at the CERN SPS. The analysis of the time evolution of transverse energy deposited in the collision zone and the energy density suggests an existence of partonic matter for a time of more than 5 fm.We examine Pb+Pb collisions at CERN SPS energy 158 A GeV, by employing the earlier developed and recently refined parton-cascade/cluster-hadronization model and its Monte Carlo implementation. This space-time model involves the dynamical interplay of perturbative QCD parton production and evolution, with non-perturbative parton-cluster formation and hadron production through cluster decays. Using computer simulations, we are able to follow the entwined time-evolution of parton and hadron degrees of freedom in both position and momentum space, from the instant of nuclear overlap to the final yield of particles. We present and discuss results for the multiplicity distributions, which agree well with the measured data from the CERN SPS, including those for K mesons. The transverse momentum distributions of the produced hadrons are also found to be in good agreement with the preliminary data measured by the NA49 and the WA98 collaboration for the collision of lead nuclei at the CERN SPS. The analysis of the time evolution of transverse energy deposited in the collision zone and the energy density suggests an existence of partonic matter for a time of more than 5 fm.nucl-th/9706002oai:cds.cern.ch:3271071997
spellingShingle Nuclear Physics - Theory
Geiger, Klaus
Kumar Srivastava, Dinesh
Parton cascade description of relativistic heavy-ion collisions at CERN SPS energies?
title Parton cascade description of relativistic heavy-ion collisions at CERN SPS energies?
title_full Parton cascade description of relativistic heavy-ion collisions at CERN SPS energies?
title_fullStr Parton cascade description of relativistic heavy-ion collisions at CERN SPS energies?
title_full_unstemmed Parton cascade description of relativistic heavy-ion collisions at CERN SPS energies?
title_short Parton cascade description of relativistic heavy-ion collisions at CERN SPS energies?
title_sort parton cascade description of relativistic heavy-ion collisions at cern sps energies?
topic Nuclear Physics - Theory
url https://dx.doi.org/10.1103/PhysRevC.56.2718
http://cds.cern.ch/record/327107
work_keys_str_mv AT geigerklaus partoncascadedescriptionofrelativisticheavyioncollisionsatcernspsenergies
AT kumarsrivastavadinesh partoncascadedescriptionofrelativisticheavyioncollisionsatcernspsenergies