EPJ Web of Conferences (Jan 2017)
Total absorption spectroscopy of fission fragments relevant for reactor antineutrino spectra
- Fallot M.,
- Porta A.,
- Meur L. Le,
- Briz J.A.,
- Zakari-Issoufou A.-A.,
- Guadilla V.,
- Algora A.,
- Taìn J.-L.,
- Valencia E.,
- Rice S.,
- Bui V.M.,
- Cormon S.,
- Estienne M.,
- Agramunt J.,
- Äystö J.,
- Batist L.,
- Bowry M.,
- Caballero-Folch R.,
- Cano-Ott D.,
- Cucoanes A.,
- Elomaa V.-V.,
- Eronen T.,
- Estévez E.,
- Farrelly G.F.,
- Fraile L.M.,
- Fleming M.,
- Ganogliu E.,
- Garcia A.R.,
- Gelletly W.,
- Gomez-Hornillos M.B.,
- Gorelov D.,
- Gorlychev V.,
- Hakala J.,
- Jokinen A.,
- Jordan M.D.,
- Kankainen A.,
- Karvonen P.,
- Kolhinen V.S.,
- Kondev F.G.,
- Koponen J.,
- Lebois M.,
- Martinez T.,
- Mason P.,
- Mendoza E.,
- Molina F.,
- Monserrate M.,
- Montaner-Pizá A.,
- Moore I.,
- Nácher E.,
- Orrigo S.E.A.,
- Penttilä H.,
- Perez A.,
- Podolyák Zs.,
- Pohjalainen I.,
- Regan P.H.,
- Reinikainen J.,
- Reponen M.,
- Rinta-Antila S.,
- Rissanen J.,
- Rubio B.,
- Shiba T.,
- Sonnenschein V.,
- Sonzogni A.A.,
- Sublet J.-C.,
- Vedia V.,
- Voss A.,
- Weber C.,
- Wilson J.N.
Affiliations
- Fallot M.
- SUBATECH, CNRS/IN2P3, Université de Nantes, Ecole des Mines de Nantes
- Porta A.
- SUBATECH, CNRS/IN2P3, Université de Nantes, Ecole des Mines de Nantes
- Meur L. Le
- SUBATECH, CNRS/IN2P3, Université de Nantes, Ecole des Mines de Nantes
- Briz J.A.
- SUBATECH, CNRS/IN2P3, Université de Nantes, Ecole des Mines de Nantes
- Zakari-Issoufou A.-A.
- SUBATECH, CNRS/IN2P3, Université de Nantes, Ecole des Mines de Nantes
- Guadilla V.
- IFIC (CSIC-Univ. Valencia)
- Algora A.
- Taìn J.-L.
- IFIC (CSIC-Univ. Valencia)
- Valencia E.
- IFIC (CSIC-Univ. Valencia)
- Rice S.
- Department of Physics, University of Surrey
- Bui V.M.
- SUBATECH, CNRS/IN2P3, Université de Nantes, Ecole des Mines de Nantes
- Cormon S.
- SUBATECH, CNRS/IN2P3, Université de Nantes, Ecole des Mines de Nantes
- Estienne M.
- SUBATECH, CNRS/IN2P3, Université de Nantes, Ecole des Mines de Nantes
- Agramunt J.
- IFIC (CSIC-Univ. Valencia)
- Äystö J.
- Helsinki Institute of Physics
- Batist L.
- Petersburg Nuclear Physics Institute
- Bowry M.
- Department of Physics, University of Surrey
- Caballero-Folch R.
- Universitat Politécnica de Catalunya (UPC)
- Cano-Ott D.
- CIEMAT
- Cucoanes A.
- SUBATECH, CNRS/IN2P3, Université de Nantes, Ecole des Mines de Nantes
- Elomaa V.-V.
- Department of Physics
- Eronen T.
- Department of Physics
- Estévez E.
- IFIC (CSIC-Univ. Valencia)
- Farrelly G.F.
- Department of Physics, University of Surrey
- Fraile L.M.
- Universidad Complutense, Grupo de Física Nuclear, CEI Moncloa
- Fleming M.
- United Kingdom Atomic Energy Authority, Culham Science Centre
- Ganogliu E.
- Department of Physics, Istanbul University
- Garcia A.R.
- CIEMAT
- Gelletly W.
- Gomez-Hornillos M.B.
- Universitat Politécnica de Catalunya (UPC)
- Gorelov D.
- Department of Physics
- Gorlychev V.
- Universitat Politécnica de Catalunya (UPC)
- Hakala J.
- Department of Physics
- Jokinen A.
- Department of Physics
- Jordan M.D.
- IFIC (CSIC-Univ. Valencia)
- Kankainen A.
- Department of Physics
- Karvonen P.
- Department of Physics
- Kolhinen V.S.
- Department of Physics
- Kondev F.G.
- Argonne National Laboratory
- Koponen J.
- Department of Physics
- Lebois M.
- Institut de Physique Nucléaire d’Orsay, CNRS/IN2P3
- Martinez T.
- CIEMAT
- Mason P.
- Department of Physics, University of Surrey
- Mendoza E.
- CIEMAT
- Molina F.
- IFIC (CSIC-Univ. Valencia)
- Monserrate M.
- IFIC (CSIC-Univ. Valencia)
- Montaner-Pizá A.
- IFIC (CSIC-Univ. Valencia)
- Moore I.
- Department of Physics
- Nácher E.
- Instituto de Estructura de la Materia, CSIC
- Orrigo S.E.A.
- IFIC (CSIC-Univ. Valencia)
- Penttilä H.
- Department of Physics
- Perez A.
- IFIC (CSIC-Univ. Valencia)
- Podolyák Zs.
- Department of Physics, University of Surrey
- Pohjalainen I.
- Department of Physics
- Regan P.H.
- Reinikainen J.
- Department of Physics
- Reponen M.
- Rinta-Antila S.
- Department of Physics
- Rissanen J.
- Department of Physics
- Rubio B.
- IFIC (CSIC-Univ. Valencia)
- Shiba T.
- SUBATECH, CNRS/IN2P3, Université de Nantes, Ecole des Mines de Nantes
- Sonnenschein V.
- Department of Physics
- Sonzogni A.A.
- National Nuclear Data Center, Brookhaven National Laboratory
- Sublet J.-C.
- United Kingdom Atomic Energy Authority, Culham Science Centre
- Vedia V.
- Universidad Complutense, Grupo de Física Nuclear, CEI Moncloa
- Voss A.
- Department of Physics
- Weber C.
- Wilson J.N.
- Institut de Physique Nucléaire d’Orsay, CNRS/IN2P3
- DOI
- https://doi.org/10.1051/epjconf/201714610002
- Journal volume & issue
-
Vol. 146
p. 10002
Abstract
The accurate determination of reactor antineutrino spectra remains a very active research topic for which new methods of study have emerged in recent years. Indeed, following the long-recognized reactor anomaly (measured antineutrino deficit in short baseline reactor experiments when compared with spectral predictions), the three international reactor neutrino experiments Double Chooz, Daya Bay and Reno have recently demonstrated the existence of spectral distortions in their measurements with respect to the same predictions. These spectral predictions were obtained through the conversion of integral beta-energy spectra obtained at the ILL research reactor. Several studies have shown that the underlying nuclear physics required for the conversion of these spectra into antineutrino spectra is not totally understood. An alternative to such converted spectra is a complementary approach that consists of determining the antineutrino spectrum by means of the measurement and processing of nuclear data. The beta properties of some key fission products suffer from the pandemonium effect which can be circumvented by the use of the Total Absorption Gamma-ray Spectroscopy technique (TAGS). The two main contributors to the Pressurized Water Reactor antineutrino spectrum in the region where the spectral distortion has been observed are 92Rb and 142Cs, which have been measured at the radioactive beam facility of the University of Jyväskylä in two TAGS experiments. We present the results of the analysis of the TAGS measurements of the β-decay properties of 92Rb along with preliminary results on 142Cs and report on the measurements already performed.