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Communication Dans Un Congrès EPJ Web of Conferences Année : 2020

What can we learn from (n, x n γ ) cross sections about reaction mechanism and nuclear structure?

Résumé

Inelastic (n,n') cross section is a key quantity to accurately simulate reactor cores, and its precision was shown to need significant improvements. To bypass the experimental difficulties to detect neutrons from (n,xn) reaction and to discriminate inelastically scattered neutrons from those following the fission process in case of fissile targets, an indirect but yet powerful method is used: the prompt γ-ray spectroscopy. Along this line, our collaboration has developed the GRAPhEME setup, optimized for actinides, at the GELINA facility to measure partial (n,xn γ) cross sections, from which the total (n,xn) cross section can be inferred. (n,xn γ) experiments with actinides are still particularly challenging, as their structure presents a high level density at low energy, and the competing neutron-induced fission reaction contaminates the γ-energy distribution. New precise measurements of the partial (n,xn γ) cross sections provide a stringent test to theoretical model and offer a way to improve them. This is a path to a better determination of the total inelastic scattering cross sections. In this contribution we discuss modeling aspects of the 238 U and 182 W (n,n' γ) reactions, also measured with GRAPhEME, using the three codes TALYS, EMPIRE and CoH. We will highlight the needed/expected improvements on reaction modeling and nuclear structure input.
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Dates et versions

hal-02957494 , version 1 (05-10-2020)

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Maëlle Kerveno, Marc Dupuis, Catalin Borcea, Marian Boromiza, Roberto Capote, et al.. What can we learn from (n, x n γ ) cross sections about reaction mechanism and nuclear structure?. ND 2019: International Conference on Nuclear Data for Science and Technology, May 2019, Pékin, China. pp.01023, ⟨10.1051/epjconf/202023901023⟩. ⟨hal-02957494⟩
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