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137,138,139La(n,γ) cross sections constrained with statistical decay properties of 138,139,140La nuclei

Kheswa, Bonginkosi Vincent; Wiedeking, Mathis; Brown, Joshua A.; Larsen, Ann-Cecilie; Goriely, Stéphane; Guttormsen, Magne Sveen; Bello Garrote, Frank Leonel; Bernstein, Lee A.; Bleuel, Darren L.; Eriksen, Tomas Kvalheim; Giacoppo, Francesca; Görgen, Andreas; Goldblum, Bethany L.; Hagen, Trine Wiborg; Koehler, Paul Edward; Klintefjord, Malin; Malatji, Kgashane L.; Midtbø, Jørgen Eriksson; Nyhus, Hilde-Therese; Papka, P.; Renstrøm, Therese; Rose, Sunniva Johanne; Sahin, Eda; Siem, Sunniva; Tornyi, Tamas Gabor
Journal article; PublishedVersion; Peer reviewed
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Kheswa_PhysRevC.95.045805.pdf (880.5Kb)
Year
2017
Permanent link
http://urn.nb.no/URN:NBN:no-58063

CRIStin
1466585

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  • Fysisk institutt [2962]
  • CRIStin høstingsarkiv [22571]
Original version
Physical Review C. Nuclear Physics. 2017, 95:045805, DOI: http://dx.doi.org/10.1103/PhysRevC.95.045805
Abstract
The nuclear level densities and γ-ray strength functions of 138,139,140La were measured using the 139La(3He,α), 139La(3He,'3He), and 139La(d,p) reactions. The particle-γ coincidences were recorded with the silicon particle telescope (SiRi) and NaI(Tl) (CACTUS) arrays. In the context of these experimental results, the low-energy enhancement in the A∼140 region is discussed. The 137,138,139La(n,γ) cross sections were calculated at s- and p-process temperatures using the experimentally measured nuclear level densities and γ-ray strength functions. Good agreement is found between 139La(n,γ) calculated cross sections and previous measurements.

This research was first published in Physical Review C - Nuclear Physics. © American Physical Society.
 
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