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Large Impact of the Decay of Niobium Isomers on the Reactor (v)over-bar(e) Summation Calculations

Date
2019
Author
Fraile, L. M.
Koponen, J.
Lebois, M.
Le Meur, L.
Martinez, T.
Monserrate, M.
Montaner-Piza, A.
Moore, I
Nacher, E.
Orrigo, S. E. A.
Penttila, H.
Pohjalainen, I
Porta, A.
Reinikainen, J.
Reponen, M.
Rinta-Antila, S.
Rubio, B.
Rytkonen, K.
Shiba, T.
Sonnenschein, V
Valencia, E.
Vedia, V.
Voss, A.
Wilson, J. N.
Zakari-Issoufou, A-A
Ganioglu, E.
Guadilla, V
Algora, A.
Tain, J. L.
Estienne, M.
Fallot, M.
Sonzogni, A. A.
Agramunt, J.
Aysto, J.
Briz, J. A.
Cucoanes, A.
Eronen, T.
Gelletly, W.
Gorelov, D.
Hakala, J.
Jokinen, A.
Jordan, D.
Kankainen, A.
Kolhinen, V
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Abstract
Even mass neutron-rich niobium isotopes are among the principal contributors to the reactor antineutrino energy spectrum. They are also among the most challenging to measure due to the refractory nature of niobium, and because they exhibit isomeric states lying very close in energy. The beta-intensity distributions of Nb-100gs,Nb-100m and Nb-102gs,Nb-02m beta decays have been determined using the total absorption.-ray spectroscopy technique. The measurements were performed at the upgraded Ion Guide Isotope Separator On-Line facility at the University of Jyvaskyla. Here, the double Penning trap system JYFLTRAP was employed to disentangle the beta decay of the isomeric states. The new data obtained in this challenging measurement have a large impact in antineutrino summation calculations. For the first time the discrepancy between the summation model and the reactor antineutrino measurements in the region of the shape distortion has been reduced.
URI
http://hdl.handle.net/20.500.12627/108591
https://doi.org/10.1103/physrevlett.122.042502
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Creative Commons Lisansı

İstanbul Üniversitesi Akademik Arşiv Sistemi (ilgili içerikte aksi belirtilmediği sürece) Creative Commons Alıntı-GayriTicari-Türetilemez 4.0 Uluslararası Lisansı ile lisanslanmıştır.

DSpace software copyright © 2002-2016  DuraSpace
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