New prompt fission neutron spectra measurements in the 238U(n,f) reaction with a dedicated setup at LANSCE/WNR

A new prompt fission neutron spectra (PFNS) measurement in the 238U(n,f) reaction was performed at LANSCE/WNR facility. Evaluated data show discrepancies on the low (below 1 MeV) and high (above 5 MeV) energy parts in the PFNS for different major and minor actinides. The goal is to improve these mea...

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Main Authors: Laurent Benoit, Marini Paola, Bélier Gilbert, Bonnet Thomas, Chatillon Audrey, Taieb Julien, Etasse David, Devlin Matthew, Haight Robert
Format: Article
Language:English
Published: EDP Sciences 2017-01-01
Series:EPJ Web of Conferences
Online Access:https://doi.org/10.1051/epjconf/201714604014
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spelling doaj-8cc120f7db6b4c7c84a34e643797af532021-08-02T09:38:45ZengEDP SciencesEPJ Web of Conferences2100-014X2017-01-011460401410.1051/epjconf/201714604014epjconf-nd2016_04014New prompt fission neutron spectra measurements in the 238U(n,f) reaction with a dedicated setup at LANSCE/WNRLaurent Benoit0Marini Paola1Bélier Gilbert2Bonnet Thomas3Chatillon Audrey4Taieb Julien5Etasse David6Devlin Matthew7Haight Robert8CEA, DAM, DIFCEA, DAM, DIFCEA, DAM, DIFCEA, DAM, DIFCEA, DAM, DIFCEA, DAM, DIFLPC Caen, ENSICAEN, Université de CaenP-27, Los Alamos National LaboratoryP-27, Los Alamos National LaboratoryA new prompt fission neutron spectra (PFNS) measurement in the 238U(n,f) reaction was performed at LANSCE/WNR facility. Evaluated data show discrepancies on the low (below 1 MeV) and high (above 5 MeV) energy parts in the PFNS for different major and minor actinides. The goal is to improve these measurements in a wide range of incident energy. The energy of the incoming neutron, inducing the fission, and the prompt neutron energies, are measured by time-of-flight method. A dedicated fission chamber was developed, in order to improve alpha-fission discrimination, timing resolution, actinide mass, and to reduce the amount of neutron scattering. To detect prompt neutrons, the 54 Chi-Nu scintillator cells array were surrounding the fission chamber. High statistics were recorded during this experiment, allowing a precise study of PFNS behavior as a function of incident neutron energy, from 1 MeV to 200 MeV. This experiment also showed that all the new tools developed to improve PFNS measurements are performing. Therefore, measurements of PFNS with others actinides such as 239Pu are planned.https://doi.org/10.1051/epjconf/201714604014
collection DOAJ
language English
format Article
sources DOAJ
author Laurent Benoit
Marini Paola
Bélier Gilbert
Bonnet Thomas
Chatillon Audrey
Taieb Julien
Etasse David
Devlin Matthew
Haight Robert
spellingShingle Laurent Benoit
Marini Paola
Bélier Gilbert
Bonnet Thomas
Chatillon Audrey
Taieb Julien
Etasse David
Devlin Matthew
Haight Robert
New prompt fission neutron spectra measurements in the 238U(n,f) reaction with a dedicated setup at LANSCE/WNR
EPJ Web of Conferences
author_facet Laurent Benoit
Marini Paola
Bélier Gilbert
Bonnet Thomas
Chatillon Audrey
Taieb Julien
Etasse David
Devlin Matthew
Haight Robert
author_sort Laurent Benoit
title New prompt fission neutron spectra measurements in the 238U(n,f) reaction with a dedicated setup at LANSCE/WNR
title_short New prompt fission neutron spectra measurements in the 238U(n,f) reaction with a dedicated setup at LANSCE/WNR
title_full New prompt fission neutron spectra measurements in the 238U(n,f) reaction with a dedicated setup at LANSCE/WNR
title_fullStr New prompt fission neutron spectra measurements in the 238U(n,f) reaction with a dedicated setup at LANSCE/WNR
title_full_unstemmed New prompt fission neutron spectra measurements in the 238U(n,f) reaction with a dedicated setup at LANSCE/WNR
title_sort new prompt fission neutron spectra measurements in the 238u(n,f) reaction with a dedicated setup at lansce/wnr
publisher EDP Sciences
series EPJ Web of Conferences
issn 2100-014X
publishDate 2017-01-01
description A new prompt fission neutron spectra (PFNS) measurement in the 238U(n,f) reaction was performed at LANSCE/WNR facility. Evaluated data show discrepancies on the low (below 1 MeV) and high (above 5 MeV) energy parts in the PFNS for different major and minor actinides. The goal is to improve these measurements in a wide range of incident energy. The energy of the incoming neutron, inducing the fission, and the prompt neutron energies, are measured by time-of-flight method. A dedicated fission chamber was developed, in order to improve alpha-fission discrimination, timing resolution, actinide mass, and to reduce the amount of neutron scattering. To detect prompt neutrons, the 54 Chi-Nu scintillator cells array were surrounding the fission chamber. High statistics were recorded during this experiment, allowing a precise study of PFNS behavior as a function of incident neutron energy, from 1 MeV to 200 MeV. This experiment also showed that all the new tools developed to improve PFNS measurements are performing. Therefore, measurements of PFNS with others actinides such as 239Pu are planned.
url https://doi.org/10.1051/epjconf/201714604014
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