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Measurement and Calculation of High-Energy Neutron Spectra behind Shielding at the CERF 120 GeV/c Hadron Beam Facility

Neutron energy spectra were measured behind the lateral shield of the CERF (CERN-EU High Energy Reference Field) facility at CERN with a 120 GeV/c positive hadron beam (a mixture of mainly protons and pions) on a cylindrical copper target (7-cm diameter by 50-cm long). An NE213 organic liquid scinti...

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Autores principales: Nakao, N, Taniguchi, S, Roesler, S, Brugger, M, Hagiwara, M, Vincke, H, Khater, H, Prinz, A A, Rokni, S H, Kosako, K
Lenguaje:eng
Publicado: 2007
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.nimb.2007.09.043
http://cds.cern.ch/record/1069687
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author Nakao, N
Taniguchi, S
Roesler, S
Brugger, M
Hagiwara, M
Vincke, H
Khater, H
Prinz, A A
Rokni, S H
Kosako, K
author_facet Nakao, N
Taniguchi, S
Roesler, S
Brugger, M
Hagiwara, M
Vincke, H
Khater, H
Prinz, A A
Rokni, S H
Kosako, K
author_sort Nakao, N
collection CERN
description Neutron energy spectra were measured behind the lateral shield of the CERF (CERN-EU High Energy Reference Field) facility at CERN with a 120 GeV/c positive hadron beam (a mixture of mainly protons and pions) on a cylindrical copper target (7-cm diameter by 50-cm long). An NE213 organic liquid scintillator (12.7-cm diameter by 12.7-cm long) was located at various longitudinal positions behind shields of 80- and 160-cm thick concrete and 40-cm thick iron. The measurement locations cover an angular range with respect to the beam axis between 13 and 133 degrees. Neutron energy spectra in the energy range between 32 MeV and 380 MeV were obtained by unfolding the measured pulse height spectra with the detector response functions which have been verified in the neutron energy range up to 380 MeV in separate experiments. Since the source term and experimental geometry in this experiment are well characterized and simple, and results are given in the form of energy spectra, these experimental results are very useful as benchmark data to check the accuracies of simulation codes and nuclear data. Monte Carlo simulations of the experimental set up were performed with the FLUKA, MARS and PHITS codes. Simulated spectra for the 80-cm thick concrete often agree within the experimental uncertainties. On the other hand, for the 160-cm thick concrete and iron shield differences are generally larger than the experimental uncertainties, yet within a factor of 2. Based on source term simulations, observed discrepancies among simulations of spectra outside the shield can be partially explained by differences in the high-energy hadron production in the copper target.
id cern-1069687
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2007
record_format invenio
spelling cern-10696872019-09-30T06:29:59Zdoi:10.1016/j.nimb.2007.09.043http://cds.cern.ch/record/1069687engNakao, NTaniguchi, SRoesler, SBrugger, MHagiwara, MVincke, HKhater, HPrinz, A ARokni, S HKosako, KMeasurement and Calculation of High-Energy Neutron Spectra behind Shielding at the CERF 120 GeV/c Hadron Beam FacilityParticle Physics - ExperimentAccelerators and Storage RingsHealth Physics and Radiation EffectsNeutron energy spectra were measured behind the lateral shield of the CERF (CERN-EU High Energy Reference Field) facility at CERN with a 120 GeV/c positive hadron beam (a mixture of mainly protons and pions) on a cylindrical copper target (7-cm diameter by 50-cm long). An NE213 organic liquid scintillator (12.7-cm diameter by 12.7-cm long) was located at various longitudinal positions behind shields of 80- and 160-cm thick concrete and 40-cm thick iron. The measurement locations cover an angular range with respect to the beam axis between 13 and 133 degrees. Neutron energy spectra in the energy range between 32 MeV and 380 MeV were obtained by unfolding the measured pulse height spectra with the detector response functions which have been verified in the neutron energy range up to 380 MeV in separate experiments. Since the source term and experimental geometry in this experiment are well characterized and simple, and results are given in the form of energy spectra, these experimental results are very useful as benchmark data to check the accuracies of simulation codes and nuclear data. Monte Carlo simulations of the experimental set up were performed with the FLUKA, MARS and PHITS codes. Simulated spectra for the 80-cm thick concrete often agree within the experimental uncertainties. On the other hand, for the 160-cm thick concrete and iron shield differences are generally larger than the experimental uncertainties, yet within a factor of 2. Based on source term simulations, observed discrepancies among simulations of spectra outside the shield can be partially explained by differences in the high-energy hadron production in the copper target.oai:cds.cern.ch:10696872007
spellingShingle Particle Physics - Experiment
Accelerators and Storage Rings
Health Physics and Radiation Effects
Nakao, N
Taniguchi, S
Roesler, S
Brugger, M
Hagiwara, M
Vincke, H
Khater, H
Prinz, A A
Rokni, S H
Kosako, K
Measurement and Calculation of High-Energy Neutron Spectra behind Shielding at the CERF 120 GeV/c Hadron Beam Facility
title Measurement and Calculation of High-Energy Neutron Spectra behind Shielding at the CERF 120 GeV/c Hadron Beam Facility
title_full Measurement and Calculation of High-Energy Neutron Spectra behind Shielding at the CERF 120 GeV/c Hadron Beam Facility
title_fullStr Measurement and Calculation of High-Energy Neutron Spectra behind Shielding at the CERF 120 GeV/c Hadron Beam Facility
title_full_unstemmed Measurement and Calculation of High-Energy Neutron Spectra behind Shielding at the CERF 120 GeV/c Hadron Beam Facility
title_short Measurement and Calculation of High-Energy Neutron Spectra behind Shielding at the CERF 120 GeV/c Hadron Beam Facility
title_sort measurement and calculation of high-energy neutron spectra behind shielding at the cerf 120 gev/c hadron beam facility
topic Particle Physics - Experiment
Accelerators and Storage Rings
Health Physics and Radiation Effects
url https://dx.doi.org/10.1016/j.nimb.2007.09.043
http://cds.cern.ch/record/1069687
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