Observations of poorly-known features of the 239Pu and 235U prompt fission neutron spectra
Prompt fission neutron spectrum (PFNS) evaluations use provide nuclear data for the PFNS across a wide range of incident and outgoing neutron energies. However, experimental data underlying the evaluation are sparse, inconsistent, and incomplete with respect to the desired incident and outgoing ener...
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doaj-705d5af626a54bcd9021f14dccda06ee2021-08-02T13:06:29ZengEDP SciencesEPJ Web of Conferences2100-014X2020-01-012390501010.1051/epjconf/202023905010epjconf_nd2019_05010Observations of poorly-known features of the 239Pu and 235U prompt fission neutron spectraKelly Keegan J.0Gomez Jaime A.1O'Donnell John M.2Devlin Matthew3Haight Robert C.4Taddeucci Terry N.5Mosby Shea M.6Lee Hye Young7Neudecker Denise8Kawano Toshihiko9Lovell Amy E.10Talou Patrick11White Morgan C12Ching-Yen Wu13Henderson Roger A.14Henderson Jack15Buckner Matthew Q.16Los Alamos National Laboratory, Los AlamosLos Alamos National Laboratory, Los AlamosLos Alamos National Laboratory, Los AlamosLos Alamos National Laboratory, Los AlamosLos Alamos National Laboratory, Los AlamosLos Alamos National Laboratory, Los AlamosLos Alamos National Laboratory, Los AlamosLos Alamos National Laboratory, Los AlamosLos Alamos National Laboratory, Los AlamosLos Alamos National Laboratory, Los AlamosLos Alamos National Laboratory, Los AlamosLos Alamos National Laboratory, Los AlamosLos Alamos National Laboratory, Los AlamosLawrence Livermore National LaboratoryLawrence Livermore National LaboratoryLawrence Livermore National LaboratoryLawrence Livermore National LaboratoryPrompt fission neutron spectrum (PFNS) evaluations use provide nuclear data for the PFNS across a wide range of incident and outgoing neutron energies. However, experimental data underlying the evaluation are sparse, inconsistent, and incomplete with respect to the desired incident and outgoing energy coverage. As such, evaluations sometimes predict features of the PFNS, such those relating to multi-chance fission and pre-equilibrium pre-fission neutron emission, without any experimental validation. The Chi-Nu experiment at Los Alamos National Laboratory has recently obtained high-precision results for the 239Pu and 235U PFNS which, for the first time in both cases, have shed light on multi-chance fission and pre-equilibrium contributions to the observed fission neutron spectrum. In addition to providing the first experimental data on some of these fission properties, the angular coverage of the Chi-Nu experiment allows for the extraction of angular distributions of pre-equilibrium pre-fission neutrons. PFNS results of multi-chance fission and pre-equilibrium pre-fission neutron emission are discussed in this proceedings in terms of the observed neutron spectrum and the average PFNS energies.https://www.epj-conferences.org/articles/epjconf/pdf/2020/15/epjconf_nd2019_05010.pdf |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Kelly Keegan J. Gomez Jaime A. O'Donnell John M. Devlin Matthew Haight Robert C. Taddeucci Terry N. Mosby Shea M. Lee Hye Young Neudecker Denise Kawano Toshihiko Lovell Amy E. Talou Patrick White Morgan C Ching-Yen Wu Henderson Roger A. Henderson Jack Buckner Matthew Q. |
spellingShingle |
Kelly Keegan J. Gomez Jaime A. O'Donnell John M. Devlin Matthew Haight Robert C. Taddeucci Terry N. Mosby Shea M. Lee Hye Young Neudecker Denise Kawano Toshihiko Lovell Amy E. Talou Patrick White Morgan C Ching-Yen Wu Henderson Roger A. Henderson Jack Buckner Matthew Q. Observations of poorly-known features of the 239Pu and 235U prompt fission neutron spectra EPJ Web of Conferences |
author_facet |
Kelly Keegan J. Gomez Jaime A. O'Donnell John M. Devlin Matthew Haight Robert C. Taddeucci Terry N. Mosby Shea M. Lee Hye Young Neudecker Denise Kawano Toshihiko Lovell Amy E. Talou Patrick White Morgan C Ching-Yen Wu Henderson Roger A. Henderson Jack Buckner Matthew Q. |
author_sort |
Kelly Keegan J. |
title |
Observations of poorly-known features of the 239Pu and 235U prompt fission neutron spectra |
title_short |
Observations of poorly-known features of the 239Pu and 235U prompt fission neutron spectra |
title_full |
Observations of poorly-known features of the 239Pu and 235U prompt fission neutron spectra |
title_fullStr |
Observations of poorly-known features of the 239Pu and 235U prompt fission neutron spectra |
title_full_unstemmed |
Observations of poorly-known features of the 239Pu and 235U prompt fission neutron spectra |
title_sort |
observations of poorly-known features of the 239pu and 235u prompt fission neutron spectra |
publisher |
EDP Sciences |
series |
EPJ Web of Conferences |
issn |
2100-014X |
publishDate |
2020-01-01 |
description |
Prompt fission neutron spectrum (PFNS) evaluations use provide nuclear data for the PFNS across a wide range of incident and outgoing neutron energies. However, experimental data underlying the evaluation are sparse, inconsistent, and incomplete with respect to the desired incident and outgoing energy coverage. As such, evaluations sometimes predict features of the PFNS, such those relating to multi-chance fission and pre-equilibrium pre-fission neutron emission, without any experimental validation. The Chi-Nu experiment at Los Alamos National Laboratory has recently obtained high-precision results for the 239Pu and 235U PFNS which, for the first time in both cases, have shed light on multi-chance fission and pre-equilibrium contributions to the observed fission neutron spectrum. In addition to providing the first experimental data on some of these fission properties, the angular coverage of the Chi-Nu experiment allows for the extraction of angular distributions of pre-equilibrium pre-fission neutrons. PFNS results of multi-chance fission and pre-equilibrium pre-fission neutron emission are discussed in this proceedings in terms of the observed neutron spectrum and the average PFNS energies. |
url |
https://www.epj-conferences.org/articles/epjconf/pdf/2020/15/epjconf_nd2019_05010.pdf |
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