English

Newly Evaluated Neutron Reaction Data on Chromium Isotopes

Nuclear Theory 2021-06-02 v1 Nuclear Experiment

Abstract

Neutron reaction data for the set of major chromium isotopes were reevaluated from the thermal energy range up to 20 MeV. In the low energy region, updates to the thermal values together with an improved RR-matrix analysis of the resonance parameters characterizing the cluster of large ss-wave resonances for 50,53^{50,53}Cr isotopes were performed. In the intermediate and high energy range up to 20 MeV, the evaluation methodology used statistical nuclear reaction models implemented in the EMPIRE code within the Hauser-Feshbach framework to evaluate the reaction cross sections and angular distributions. Exceptionally, experimental data were used to evaluate relevant cross sections above the resonance region up to 5 MeV in the major 52^{52}Cr isotope. Evaluations were benchmarked with Monte Carlo simulations of a small suite of critical assemblies highly sensitive to Chromium data, and with the Oktavian shielding benchmark to judge deep penetration performance with a 14-MeV D-T neutron source. A significant improvement in performance is demonstrated compared to existing evaluations.

Keywords

Cite

@article{arxiv.2102.11794,
  title  = {Newly Evaluated Neutron Reaction Data on Chromium Isotopes},
  author = {G. P. A. Nobre and M. T. Pigni and D. A. Brown and R. Capote and A. Trkov and K. H. Guber and R. Arcilla and J. Gutierrez and A. Cuadra and G. Arbanas and B. Kos and D. Bernard and P. Leconte},
  journal= {arXiv preprint arXiv:2102.11794},
  year   = {2021}
}

Comments

Submitted to Nuclear Data Sheets. 41 pages, 44 Figures, 13 Tables

R2 v1 2026-06-23T23:26:41.768Z