What to expect from microscopic nuclear modelling for k$_{\rm eff}$ calculations ?

Fuente: arXiv
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Main Authors: Rochman, D., Koning, A., Goriely, S., Hilaire, S.
Format: Preprint
Published: 2025
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author Rochman, D.
Koning, A.
Goriely, S.
Hilaire, S.
author_facet Rochman, D.
Koning, A.
Goriely, S.
Hilaire, S.
contents Comparisons between predicted and benchmark k$_{\rm eff}$ values from criticality-safety systems are often used as metrics to estimate the quality of evaluated nuclear data libraries. Relevant nuclear data for these critical systems generally come from a mixture of expert knowledge and phenomenological predictions. In the present work, we use solely microscopic nuclear modelling from TALYS to estimate actinides cross sections and angular distributions, and we compare the calculated MCNP k$_{\rm eff}$ values for fast systems between the JEFF-3.3 evaluated library, phenomenological and microscopic modelling. The conclusion is that even if the evaluated library leads to the most adequate results, the microscopic nuclear modelling can reach very similar results for these integral quantities. It demonstrates the remarkable advances in the recent decades of microscopic nuclear reaction ingredients for applied integral observables.
format Preprint
id arxiv_https___arxiv_org_abs_2510_11256
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle What to expect from microscopic nuclear modelling for k$_{\rm eff}$ calculations ?
Rochman, D.
Koning, A.
Goriely, S.
Hilaire, S.
Nuclear Theory
Comparisons between predicted and benchmark k$_{\rm eff}$ values from criticality-safety systems are often used as metrics to estimate the quality of evaluated nuclear data libraries. Relevant nuclear data for these critical systems generally come from a mixture of expert knowledge and phenomenological predictions. In the present work, we use solely microscopic nuclear modelling from TALYS to estimate actinides cross sections and angular distributions, and we compare the calculated MCNP k$_{\rm eff}$ values for fast systems between the JEFF-3.3 evaluated library, phenomenological and microscopic modelling. The conclusion is that even if the evaluated library leads to the most adequate results, the microscopic nuclear modelling can reach very similar results for these integral quantities. It demonstrates the remarkable advances in the recent decades of microscopic nuclear reaction ingredients for applied integral observables.
title What to expect from microscopic nuclear modelling for k$_{\rm eff}$ calculations ?
topic Nuclear Theory
url https://arxiv.org/abs/2510.11256