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Transverse momentum spectra of hadrons in $p+p$ collisions at CERN SPS energies from the UrQMD transport model

The UrQMD transport model, version 3.4, is used to study the new experimental data on transverse momentum spectra of π± , K± , p and p¯ produced in inelastic p+p interactions at SPS energies, recently published by the NA61/SHINE Collaboration. The comparison of model predictions to these new measure...

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Detalles Bibliográficos
Autores principales: Ozvenchuk, Vitalii, Rybicki, Andrzej
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.nuclphysa.2018.03.002
http://cds.cern.ch/record/2712764
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author Ozvenchuk, Vitalii
Rybicki, Andrzej
author_facet Ozvenchuk, Vitalii
Rybicki, Andrzej
author_sort Ozvenchuk, Vitalii
collection CERN
description The UrQMD transport model, version 3.4, is used to study the new experimental data on transverse momentum spectra of π± , K± , p and p¯ produced in inelastic p+p interactions at SPS energies, recently published by the NA61/SHINE Collaboration. The comparison of model predictions to these new measurements is presented as a function of collision energy for central and forward particle rapidity intervals. In addition, the inverse slope parameters characterizing the transverse momentum distributions are extracted from the predicted spectra and compared to the corresponding values obtained from NA61/SHINE distributions, as a function of particle rapidity and collision energy. A complex pattern of deviations between the experimental data and the UrQMD model emerges. For charged pions, the fair agreement visible at top SPS energies deteriorates with the decreasing energy. For charged K mesons, UrQMD significantly underpredicts positive kaon production at lower beam momenta. It also underpredicts the central rapidity proton yield at top collision energy and overpredicts antiproton production at all considered energies. We conclude that the new experimental data analyzed in this paper still constitute a challenge for the present version of the model.
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institution Organización Europea para la Investigación Nuclear
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spelling cern-27127642021-05-03T20:05:20Zdoi:10.1016/j.nuclphysa.2018.03.002doi:10.1016/j.nuclphysa.2018.03.002http://cds.cern.ch/record/2712764engOzvenchuk, VitaliiRybicki, AndrzejTransverse momentum spectra of hadrons in $p+p$ collisions at CERN SPS energies from the UrQMD transport modelnucl-thNuclear Physics - Theoryhep-phParticle Physics - PhenomenologyThe UrQMD transport model, version 3.4, is used to study the new experimental data on transverse momentum spectra of π± , K± , p and p¯ produced in inelastic p+p interactions at SPS energies, recently published by the NA61/SHINE Collaboration. The comparison of model predictions to these new measurements is presented as a function of collision energy for central and forward particle rapidity intervals. In addition, the inverse slope parameters characterizing the transverse momentum distributions are extracted from the predicted spectra and compared to the corresponding values obtained from NA61/SHINE distributions, as a function of particle rapidity and collision energy. A complex pattern of deviations between the experimental data and the UrQMD model emerges. For charged pions, the fair agreement visible at top SPS energies deteriorates with the decreasing energy. For charged K mesons, UrQMD significantly underpredicts positive kaon production at lower beam momenta. It also underpredicts the central rapidity proton yield at top collision energy and overpredicts antiproton production at all considered energies. We conclude that the new experimental data analyzed in this paper still constitute a challenge for the present version of the model.The UrQMD transport model, version 3.4, is used to study the new experimental data on transverse momentum spectra of $\pi^{\pm}$, $K^{\pm}$, $p$ and $\bar p$ produced in inelastic $p+p$ interactions at SPS energies, recently published by the NA61/SHINE Collaboration. The comparison of model predictions to these new measurements is presented as a function of collision energy for central and forward particle rapidity intervals. In addition, the inverse slope parameters characterizing the transverse momentum distributions are extracted from the predicted spectra and compared to the corresponding values obtained from NA61/SHINE distributions, as a function of particle rapidity and collision energy. A complex pattern of deviations between the experimental data and the UrQMD model emerges. For charged pions, the fair agreement visible at top SPS energies deteriorates with the decreasing energy. For charged $K$ mesons, UrQMD significantly underpredicts positive kaon production at lower beam momenta. It also underpredicts the central rapidity proton yield at top collision energy and overpredicts antiproton production at all considered energies. We conclude that the new experimental data analyzed in this paper still constitute a challenge for the present version of the model.arXiv:1711.02963oai:cds.cern.ch:27127642017-11-08
spellingShingle nucl-th
Nuclear Physics - Theory
hep-ph
Particle Physics - Phenomenology
Ozvenchuk, Vitalii
Rybicki, Andrzej
Transverse momentum spectra of hadrons in $p+p$ collisions at CERN SPS energies from the UrQMD transport model
title Transverse momentum spectra of hadrons in $p+p$ collisions at CERN SPS energies from the UrQMD transport model
title_full Transverse momentum spectra of hadrons in $p+p$ collisions at CERN SPS energies from the UrQMD transport model
title_fullStr Transverse momentum spectra of hadrons in $p+p$ collisions at CERN SPS energies from the UrQMD transport model
title_full_unstemmed Transverse momentum spectra of hadrons in $p+p$ collisions at CERN SPS energies from the UrQMD transport model
title_short Transverse momentum spectra of hadrons in $p+p$ collisions at CERN SPS energies from the UrQMD transport model
title_sort transverse momentum spectra of hadrons in $p+p$ collisions at cern sps energies from the urqmd transport model
topic nucl-th
Nuclear Physics - Theory
hep-ph
Particle Physics - Phenomenology
url https://dx.doi.org/10.1016/j.nuclphysa.2018.03.002
https://dx.doi.org/10.1016/j.nuclphysa.2018.03.002
http://cds.cern.ch/record/2712764
work_keys_str_mv AT ozvenchukvitalii transversemomentumspectraofhadronsinppcollisionsatcernspsenergiesfromtheurqmdtransportmodel
AT rybickiandrzej transversemomentumspectraofhadronsinppcollisionsatcernspsenergiesfromtheurqmdtransportmodel