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Advances in Modelling of Fast Neutrons Induced Fission of $^{232}$Th

Nuclear data obtained in the neutron induced fission of $^{232}$Th nucleus are of great importance for advanced fast reactors based on Th fuel cycle. Fission cross sections, mass and charge distributions, prompt emission in fission including neutron multiplicities, yields and cross-sections of some...

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Autores principales: Oprea, C, Mihul, A, Oprea, A I
Lenguaje:eng
Publicado: 2022
Acceso en línea:https://dx.doi.org/10.3103/S106287382211020X
http://cds.cern.ch/record/2843765
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author Oprea, C
Mihul, A
Oprea, A I
author_facet Oprea, C
Mihul, A
Oprea, A I
author_sort Oprea, C
collection CERN
description Nuclear data obtained in the neutron induced fission of $^{232}$Th nucleus are of great importance for advanced fast reactors based on Th fuel cycle. Fission cross sections, mass and charge distributions, prompt emission in fission including neutron multiplicities, yields and cross-sections of some isotopes of interest for applications, isomer ratios were obtained. This paper presents the theoretical predictions and the first results on $^{232}$Th(n,f) by applying Talys and the author’s computer code for modeling of nuclear reaction mechanisms and the fission process. Theoretical evaluations of fission observables and produced isotopes are compared with existing experimental data and with similar data for neutrons induced fission of $^{233}$U nucleus. The present researches on $^{232}$Th(n,f) reaction are realized in the frame of nuclear data program running at Joint Institute for Nuclear Research (Dubna) basic facilities, IREN, and MT-25 Microtron.
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language eng
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spelling cern-28437652022-12-13T19:39:16Zdoi:10.3103/S106287382211020Xhttp://cds.cern.ch/record/2843765engOprea, CMihul, AOprea, A IAdvances in Modelling of Fast Neutrons Induced Fission of $^{232}$ThNuclear data obtained in the neutron induced fission of $^{232}$Th nucleus are of great importance for advanced fast reactors based on Th fuel cycle. Fission cross sections, mass and charge distributions, prompt emission in fission including neutron multiplicities, yields and cross-sections of some isotopes of interest for applications, isomer ratios were obtained. This paper presents the theoretical predictions and the first results on $^{232}$Th(n,f) by applying Talys and the author’s computer code for modeling of nuclear reaction mechanisms and the fission process. Theoretical evaluations of fission observables and produced isotopes are compared with existing experimental data and with similar data for neutrons induced fission of $^{233}$U nucleus. The present researches on $^{232}$Th(n,f) reaction are realized in the frame of nuclear data program running at Joint Institute for Nuclear Research (Dubna) basic facilities, IREN, and MT-25 Microtron.oai:cds.cern.ch:28437652022
spellingShingle Oprea, C
Mihul, A
Oprea, A I
Advances in Modelling of Fast Neutrons Induced Fission of $^{232}$Th
title Advances in Modelling of Fast Neutrons Induced Fission of $^{232}$Th
title_full Advances in Modelling of Fast Neutrons Induced Fission of $^{232}$Th
title_fullStr Advances in Modelling of Fast Neutrons Induced Fission of $^{232}$Th
title_full_unstemmed Advances in Modelling of Fast Neutrons Induced Fission of $^{232}$Th
title_short Advances in Modelling of Fast Neutrons Induced Fission of $^{232}$Th
title_sort advances in modelling of fast neutrons induced fission of $^{232}$th
url https://dx.doi.org/10.3103/S106287382211020X
http://cds.cern.ch/record/2843765
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AT mihula advancesinmodellingoffastneutronsinducedfissionof232th
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