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Published August 2022 | Version v1
Journal article

EXFOR-based simultaneous evaluation of neutron-induced uranium and plutonium fission cross sections for JENDL-5

  • 1. Nuclear Data Section, Division of Physical and Chemical Sciences, Department of Nuclear Sciences and Applications, International Atomic Energy Agency, Vienna (Austria)
  • 2. Japan Atomic Energy Agency, Nuclear Science and Engineering Center, Nuclear Data Center, Tokai, Ibaraki (Japan)

Description

The neutron-induced fission cross sections were simultaneously evaluated for the JENDL-5 library for 233,235U and 239,241Pu from 10 keV to 200 MeV and for 238U and 240Pu from 100 keV to 200 MeV. Evaluation was performed by least-squares fitting of Schmittroth's roof function to the logarithms of the experimental cross sections and cross section ratios in the EXFOR library. A simultaneous evaluation code SOK was used with its extension to data in arbitrary unit. The outputs of the code were adopted as the evaluated cross sections without any further corrections. The newly obtained evaluated cross sections were compared with the evaluated cross sections in the JENDL-4.0 library and the IAEA Neutron Data Standards 2017. The evaluated cross sections were also validated against the californium-252 spontaneous fission neutron spectrum averaged cross sections, ΣΣ (coupled thermal/fast uranium and boron carbide spherical assembly) neutron spectrum averaged cross sections, and small-sized LANL fast system criticalities. The changes in the obtained evaluated cross sections from those in the JENDL-4.0 library are within 4% (241Pu), 3% (233U, 240Pu), or 2% (235U, 239Pu). The newly evaluated 235U, 238U and 239Pu cross sections agree with the IAEA Neutron Data Standards 2017 within 2% with some exceptions. (author)

Availability note (English)

Available from DOI: https://doi.org/10.1080/00223131.2022.2030259

Additional details

Publishing Information

Journal Title
Journal of Nuclear Science and Technology (Tokyo) (Online)
Journal Volume
59
Journal Issue
8
Journal Page Range
p. 1004-1036
ISSN
1881-1248

Optional Information

Notes
202 refs., 26 figs., 6 tabs.