Precise determination of the 235U reactor antineutrino cross section per fission

We investigate which among the reactor antineutrino fluxes from the decays of the fission products of U235, U238, Pu239, and Pu241 may be responsible for the reactor antineutrino anomaly if the anomaly is due to a miscalculation of the antineutrino fluxes. We find that it is very likely that at leas...

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Main Author: C. Giunti
Format: Article
Language:English
Published: Elsevier 2017-01-01
Series:Physics Letters B
Online Access:http://www.sciencedirect.com/science/article/pii/S0370269316306918
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author C. Giunti
author_facet C. Giunti
author_sort C. Giunti
collection DOAJ
description We investigate which among the reactor antineutrino fluxes from the decays of the fission products of U235, U238, Pu239, and Pu241 may be responsible for the reactor antineutrino anomaly if the anomaly is due to a miscalculation of the antineutrino fluxes. We find that it is very likely that at least the calculation of the U235 flux must be revised. From the fit of the data we obtain the precise determination σ235=(6.33±0.08)×10−43cm2/fission of the U235 cross section per fission, which is more precise than the calculated value and differs from it by 2.2σ. The cross sections per fission of the other fluxes have large uncertainties and in practice their values are undetermined by the fit.
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spelling doaj.art-a1db36e5c8e5462b83d5ba015c3bb0182022-12-22T03:09:32ZengElsevierPhysics Letters B0370-26931873-24452017-01-01764C14514910.1016/j.physletb.2016.11.028Precise determination of the 235U reactor antineutrino cross section per fissionC. GiuntiWe investigate which among the reactor antineutrino fluxes from the decays of the fission products of U235, U238, Pu239, and Pu241 may be responsible for the reactor antineutrino anomaly if the anomaly is due to a miscalculation of the antineutrino fluxes. We find that it is very likely that at least the calculation of the U235 flux must be revised. From the fit of the data we obtain the precise determination σ235=(6.33±0.08)×10−43cm2/fission of the U235 cross section per fission, which is more precise than the calculated value and differs from it by 2.2σ. The cross sections per fission of the other fluxes have large uncertainties and in practice their values are undetermined by the fit.http://www.sciencedirect.com/science/article/pii/S0370269316306918
spellingShingle C. Giunti
Precise determination of the 235U reactor antineutrino cross section per fission
Physics Letters B
title Precise determination of the 235U reactor antineutrino cross section per fission
title_full Precise determination of the 235U reactor antineutrino cross section per fission
title_fullStr Precise determination of the 235U reactor antineutrino cross section per fission
title_full_unstemmed Precise determination of the 235U reactor antineutrino cross section per fission
title_short Precise determination of the 235U reactor antineutrino cross section per fission
title_sort precise determination of the 235u reactor antineutrino cross section per fission
url http://www.sciencedirect.com/science/article/pii/S0370269316306918
work_keys_str_mv AT cgiunti precisedeterminationofthe235ureactorantineutrinocrosssectionperfission