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Simulation of neutron production in hadron-nucleus and nucleus-nucleus interactions in Geant4

Studying experimental data obtained at ITEP [1] on neutron production in interactions of protons with various nuclei in the energy range from 747 MeV up to 8.1 GeV, we have found that slow neutron spectra have scaling and asymptotic properties [2]. The spectra weakly depend on the collision energy a...

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Detalles Bibliográficos
Autores principales: Galoyan, Aida, Ribon, Alberto, Uzhinsky, Vladimir
Lenguaje:eng
Publicado: 2019
Materias:
Acceso en línea:https://dx.doi.org/10.1051/epjconf/201920403004
http://cds.cern.ch/record/2649078
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author Galoyan, Aida
Ribon, Alberto
Uzhinsky, Vladimir
author_facet Galoyan, Aida
Ribon, Alberto
Uzhinsky, Vladimir
author_sort Galoyan, Aida
collection CERN
description Studying experimental data obtained at ITEP [1] on neutron production in interactions of protons with various nuclei in the energy range from 747 MeV up to 8.1 GeV, we have found that slow neutron spectra have scaling and asymptotic properties [2]. The spectra weakly depend on the collision energy at momenta of projectile protons larger than 5 – 6 GeV/c. These properties are taken into account in the Geant4 Fritiof (FTF) model. The improved FTF model describes as well as the Geant4 Bertini model the experimental data on neutron production by 1.2 GeV and 1.6 GeV protons on targets (Fe, Pb) [3] and by 3.0 GeV protons on various targets (Al, Fe, Pb) [4]. For neutron production in antiproton-nucleus interactions, it is demonstrated that the FTF results are in a satisfactory agreement with experimental data of the LEAR collaboration [5]. The FTF model gives promising results for neutron production in nucleus - nucleus interactions at projectile energy 1 – 2 GeV per nucleon [6]. The observed properties allow one to predict neutron yields in the nucleus-nucleus interactions at high and very high energies. Predictions for the NICA/MPD experiment at JINR are presented.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
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spelling cern-26490782023-03-14T17:22:12Zdoi:10.1051/epjconf/201920403004http://cds.cern.ch/record/2649078engGaloyan, AidaRibon, AlbertoUzhinsky, VladimirSimulation of neutron production in hadron-nucleus and nucleus-nucleus interactions in Geant4nucl-exNuclear Physics - Experimenthep-exParticle Physics - Experimenthep-phParticle Physics - PhenomenologyStudying experimental data obtained at ITEP [1] on neutron production in interactions of protons with various nuclei in the energy range from 747 MeV up to 8.1 GeV, we have found that slow neutron spectra have scaling and asymptotic properties [2]. The spectra weakly depend on the collision energy at momenta of projectile protons larger than 5 – 6 GeV/c. These properties are taken into account in the Geant4 Fritiof (FTF) model. The improved FTF model describes as well as the Geant4 Bertini model the experimental data on neutron production by 1.2 GeV and 1.6 GeV protons on targets (Fe, Pb) [3] and by 3.0 GeV protons on various targets (Al, Fe, Pb) [4]. For neutron production in antiproton-nucleus interactions, it is demonstrated that the FTF results are in a satisfactory agreement with experimental data of the LEAR collaboration [5]. The FTF model gives promising results for neutron production in nucleus - nucleus interactions at projectile energy 1 – 2 GeV per nucleon [6]. The observed properties allow one to predict neutron yields in the nucleus-nucleus interactions at high and very high energies. Predictions for the NICA/MPD experiment at JINR are presented.Studying experimental data obtained at ITEP [1] on neutron production in interactions of protons with various nuclei in the energy range from 747 MeV up to 8.1 GeV, we have found that slow neutron spectra have scaling and asymptotic properties [2]. The spectra weakly depend on the collision energy at momenta of projectile protons larger than 5 - 6 GeV/c. These properties are taken into account in the Geant4 Fritiof (FTF) model. The improved FTF model describes as well as the Geant4 Bertini model the experimental data on neutron production by 1.2 GeV and 1.6 GeV protons on targets (Fe, Pb) [3] and by 3.0 GeV protons on various targets (Al, Fe, Pb) [4]. For neutron production in antiproton-nucleus interactions, it was demonstrated that the FTF results are in a satisfactory agreement with experimental data of the LEAR collaboration [5]. The FTF model gives promising results for neutron production in nucleus - nucleus interactions at projectile energy 1 - 2 GeV per nucleon [6]. The observed properties allow one to predict neutron yields in the nucleus-nucleus interactions at high and very high energies. Predictions for the NICA/MPD experiment at JINR are presented.arXiv:1811.03896oai:cds.cern.ch:26490782019
spellingShingle nucl-ex
Nuclear Physics - Experiment
hep-ex
Particle Physics - Experiment
hep-ph
Particle Physics - Phenomenology
Galoyan, Aida
Ribon, Alberto
Uzhinsky, Vladimir
Simulation of neutron production in hadron-nucleus and nucleus-nucleus interactions in Geant4
title Simulation of neutron production in hadron-nucleus and nucleus-nucleus interactions in Geant4
title_full Simulation of neutron production in hadron-nucleus and nucleus-nucleus interactions in Geant4
title_fullStr Simulation of neutron production in hadron-nucleus and nucleus-nucleus interactions in Geant4
title_full_unstemmed Simulation of neutron production in hadron-nucleus and nucleus-nucleus interactions in Geant4
title_short Simulation of neutron production in hadron-nucleus and nucleus-nucleus interactions in Geant4
title_sort simulation of neutron production in hadron-nucleus and nucleus-nucleus interactions in geant4
topic nucl-ex
Nuclear Physics - Experiment
hep-ex
Particle Physics - Experiment
hep-ph
Particle Physics - Phenomenology
url https://dx.doi.org/10.1051/epjconf/201920403004
http://cds.cern.ch/record/2649078
work_keys_str_mv AT galoyanaida simulationofneutronproductioninhadronnucleusandnucleusnucleusinteractionsingeant4
AT ribonalberto simulationofneutronproductioninhadronnucleusandnucleusnucleusinteractionsingeant4
AT uzhinskyvladimir simulationofneutronproductioninhadronnucleusandnucleusnucleusinteractionsingeant4