Employing TALYS to deduce angular momentum rootmean-square values, Jrms, in fission fragments
Fission fragments exhibit large angular momenta J, which constitutes a challenge for fission models to fully explain. Systematic measurements of isomeric yield ratios (IYR) are needed for basic nuclear reaction physics and nuclear applications, especially as a function of mass number and excitation...
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2020-01-01
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doaj-fe752740d79949a1938392f2649a13482021-08-02T19:19:21ZengEDP SciencesEPJ Web of Conferences2100-014X2020-01-012390301910.1051/epjconf/202023903019epjconf_nd2019_03019Employing TALYS to deduce angular momentum rootmean-square values, Jrms, in fission fragmentsAl-Adili A0Solders A.1Rakopoulos V.2IDepartment of Physics and Astronomy, Uppsala UniversityIDepartment of Physics and Astronomy, Uppsala UniversityIDepartment of Physics and Astronomy, Uppsala UniversityFission fragments exhibit large angular momenta J, which constitutes a challenge for fission models to fully explain. Systematic measurements of isomeric yield ratios (IYR) are needed for basic nuclear reaction physics and nuclear applications, especially as a function of mass number and excitation energy. One goal is to improve the current understanding of the angular momentum generation and sharing in the fission process. To do so, one needs to improve the modeling of nuclear de-excitation. In this work, we have used the TALYS nuclear-reaction code to relax excited fission fragments and to extract root-mean-square (rms) values of initial spin distributions, after comparison with experimentally determined IYRs. The method was assessed by a comparative study on 252Cf(sf) and 235U(nth,f). The results show a consistent performance of TALYS, both in comparison to reported literature values and to other fission codes. A few discrepant Jrms values were also found. The discrepant literature values could need a second consideration as they could possibly be caused by outdated models. Our TALYS method will be refined to better comply with contemporary sophisticated models and to reexamine older deduced values in literature.https://www.epj-conferences.org/articles/epjconf/pdf/2020/15/epjconf_nd2019_03019.pdf |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Al-Adili A Solders A. Rakopoulos V. |
spellingShingle |
Al-Adili A Solders A. Rakopoulos V. Employing TALYS to deduce angular momentum rootmean-square values, Jrms, in fission fragments EPJ Web of Conferences |
author_facet |
Al-Adili A Solders A. Rakopoulos V. |
author_sort |
Al-Adili A |
title |
Employing TALYS to deduce angular momentum rootmean-square values, Jrms, in fission fragments |
title_short |
Employing TALYS to deduce angular momentum rootmean-square values, Jrms, in fission fragments |
title_full |
Employing TALYS to deduce angular momentum rootmean-square values, Jrms, in fission fragments |
title_fullStr |
Employing TALYS to deduce angular momentum rootmean-square values, Jrms, in fission fragments |
title_full_unstemmed |
Employing TALYS to deduce angular momentum rootmean-square values, Jrms, in fission fragments |
title_sort |
employing talys to deduce angular momentum rootmean-square values, jrms, in fission fragments |
publisher |
EDP Sciences |
series |
EPJ Web of Conferences |
issn |
2100-014X |
publishDate |
2020-01-01 |
description |
Fission fragments exhibit large angular momenta J, which constitutes a challenge for fission models to fully explain. Systematic measurements of isomeric yield ratios (IYR) are needed for basic nuclear reaction physics and nuclear applications, especially as a function of mass number and excitation energy. One goal is to improve the current understanding of the angular momentum generation and sharing in the fission process. To do so, one needs to improve the modeling of nuclear de-excitation.
In this work, we have used the TALYS nuclear-reaction code to relax excited fission fragments and to extract root-mean-square (rms) values of initial spin distributions, after comparison with experimentally determined IYRs. The method was assessed by a comparative study on 252Cf(sf) and 235U(nth,f). The results show a consistent performance of TALYS, both in comparison to reported literature values and to other fission codes. A few discrepant Jrms values were also found. The discrepant literature values could need a second consideration as they could possibly be caused by outdated models. Our TALYS method will be refined to better comply with contemporary sophisticated models and to reexamine older deduced values in literature. |
url |
https://www.epj-conferences.org/articles/epjconf/pdf/2020/15/epjconf_nd2019_03019.pdf |
work_keys_str_mv |
AT aladilia employingtalystodeduceangularmomentumrootmeansquarevaluesjrmsinfissionfragments AT soldersa employingtalystodeduceangularmomentumrootmeansquarevaluesjrmsinfissionfragments AT rakopoulosv employingtalystodeduceangularmomentumrootmeansquarevaluesjrmsinfissionfragments |
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