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Benchmarking Nuclear Reaction Models of the FLUKA Monte Carlo Code for Heavy Ion Collisions

In this report, I summarize the work conducted during my eight weeks as a summer student in the EN-STI-FLU department of CERN. The work focused on the benchmarking of FLUKA double differential cross sections of secondary fragments produced in fixed-target heavy ion collisions in the beam energy rang...

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Autor principal: Holm, Emil Brinch
Lenguaje:eng
Publicado: 2019
Materias:
Acceso en línea:http://cds.cern.ch/record/2687335
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author Holm, Emil Brinch
author_facet Holm, Emil Brinch
author_sort Holm, Emil Brinch
collection CERN
description In this report, I summarize the work conducted during my eight weeks as a summer student in the EN-STI-FLU department of CERN. The work focused on the benchmarking of FLUKA double differential cross sections of secondary fragments produced in fixed-target heavy ion collisions in the beam energy range between 10 MeV/nucleon and 1 GeV/nucleon. Specifically, the accuracy of FLUKA models for nucleus-nucleus interactions, namely the Boltzmann Master Equation (BME) and the relativistic Quantum Molecular Dynamics (rQMD) models, were analyzed. Furthermore, we compared the FLUKA production version 2011.2x.6 with the FLUKA development version 2018.2 and found that the latter is a considerable improvement to the former. Nevertheless, further improvements are required to better reproduce the experimental data. The major refinements needed are presented and discussed in this report.
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spelling cern-26873352019-09-30T06:29:59Zhttp://cds.cern.ch/record/2687335engHolm, Emil BrinchBenchmarking Nuclear Reaction Models of the FLUKA Monte Carlo Code for Heavy Ion CollisionsNuclear Physics - ExperimentNuclear Physics - TheoryIn this report, I summarize the work conducted during my eight weeks as a summer student in the EN-STI-FLU department of CERN. The work focused on the benchmarking of FLUKA double differential cross sections of secondary fragments produced in fixed-target heavy ion collisions in the beam energy range between 10 MeV/nucleon and 1 GeV/nucleon. Specifically, the accuracy of FLUKA models for nucleus-nucleus interactions, namely the Boltzmann Master Equation (BME) and the relativistic Quantum Molecular Dynamics (rQMD) models, were analyzed. Furthermore, we compared the FLUKA production version 2011.2x.6 with the FLUKA development version 2018.2 and found that the latter is a considerable improvement to the former. Nevertheless, further improvements are required to better reproduce the experimental data. The major refinements needed are presented and discussed in this report.CERN-STUDENTS-Note-2019-104oai:cds.cern.ch:26873352019-08-23
spellingShingle Nuclear Physics - Experiment
Nuclear Physics - Theory
Holm, Emil Brinch
Benchmarking Nuclear Reaction Models of the FLUKA Monte Carlo Code for Heavy Ion Collisions
title Benchmarking Nuclear Reaction Models of the FLUKA Monte Carlo Code for Heavy Ion Collisions
title_full Benchmarking Nuclear Reaction Models of the FLUKA Monte Carlo Code for Heavy Ion Collisions
title_fullStr Benchmarking Nuclear Reaction Models of the FLUKA Monte Carlo Code for Heavy Ion Collisions
title_full_unstemmed Benchmarking Nuclear Reaction Models of the FLUKA Monte Carlo Code for Heavy Ion Collisions
title_short Benchmarking Nuclear Reaction Models of the FLUKA Monte Carlo Code for Heavy Ion Collisions
title_sort benchmarking nuclear reaction models of the fluka monte carlo code for heavy ion collisions
topic Nuclear Physics - Experiment
Nuclear Physics - Theory
url http://cds.cern.ch/record/2687335
work_keys_str_mv AT holmemilbrinch benchmarkingnuclearreactionmodelsoftheflukamontecarlocodeforheavyioncollisions