High accuracy U(n,f) data in the resonance energy region

نویسندگان

  • C. Paradela
  • I. Duran
  • L.Tassan-Got
  • L.Audouin
  • B. Berthier
  • S. Isaev
  • C. Le Naour
  • C. Stephan
  • D. Tarrío
  • U. Abbondanno
  • G. Aerts
  • H. Álvarez-Pol
  • F. Álvarez-Velarde
  • S. Andriamonje
  • J. Andrzejewski
  • G. Badurek
  • P. Baumann
  • F. Becvar
  • E. Berthoumieux
  • F. Calviño
  • M. Calviani
  • D. Cano-Ott
  • R. Capote
  • C. Carrapiço
  • P. Cennini
  • V. Chepel
  • E. Chiaveri
  • N. Colonna
  • G. Cortes
  • A. Couture
  • J. Cox
  • M. Dahlfors
  • S. David
  • I. Dillmann
  • C. Domingo-Pardo
  • W. Dridi
  • C. Eleftheriadis
  • M. Embid-Segura
  • L. Ferrant
  • A. Ferrari
  • R. Ferreira-Marques
  • K. Fujii
  • W. Furman
  • I. F. Gonçalves
  • E. Gonzalez-Romero
  • A. Goverdovski
  • F. Gramegna
  • C. Guerrero
  • T. Martinez
  • S. Marrone
  • C. Massimi
  • P. Mastinu
  • A. Mengoni
  • J. Salgado
  • C. Santos
  • L. Sarchiapone
  • L. Tavora
  • R. Terlizzi
  • P. Vaz
  • A. Ventura
  • D. Villamarin
چکیده

The U neutron-induced cross section is widely used as reference cross section for measuring other fission cross sections, but in the resonance region it is not considered as an IAEA standard because of the scarce experimental data covering the full region. In this work, we deal with a new analysis of the experimental data obtained with a detection setup based on parallel plate ionization chambers (PPACs) at the CERN n_TOF facility in the range from 1 eV to 10 keV. The relative cross section has been normalised to the IAEA value in the region between 7.8 and 11 eV, which is claimed as well-known. Comparison with the ENDF/B-VII evaluation and the IAEA reference file from 100 eV to 10 keV are provided.

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تاریخ انتشار 2016