EPJ Web of Conferences (Jan 2017)
The 236U neutron capture cross-section measured at the n_TOF CERN facility
- Mastromarco M.,
- Barbagallo M.,
- Vermeulen M.J.,
- Colonna N.,
- Altstadt S.,
- Andrzejewski J.,
- Audouin L.,
- Bécares V.,
- Bečvář F.,
- Belloni F.,
- Berthoumieux E.,
- Billowes J.,
- Bosnar D.,
- Brugger M.,
- Calviño F.,
- Calviani M.,
- Cano-Ott D.,
- Carrapiço C.,
- Cerutti F.,
- Chiaveri E.,
- Chin M.,
- Cortés G.,
- Cortés-Giraldo M.A.,
- Diakaki M.,
- Domingo-Pardo C.,
- Durán I.,
- Dzysiuk N.,
- Eleftheriadis C.,
- Ferrari A.,
- Fraval K.,
- Furman V.,
- Gómez-Hornillos M.B.,
- Ganesan S.,
- García A.R.,
- Giubrone G.,
- Gonçalves I.F.,
- González E.,
- Goverdovski A.,
- Griesmayer E.,
- Guerrero C.,
- Gunsing F.,
- Gurusamy P.,
- Heftrich T.,
- Heinitz S.,
- Hernández-Prieto A.,
- Heyse J.,
- Jenkins D.G.,
- Jericha E.,
- Käppeler F.,
- Kadi Y.,
- Karadimos D.,
- Katabuchi T.,
- Ketlerov V.,
- Khryachkov V.,
- Koehler P.,
- Kokkoris M.,
- Kroll J.,
- Krtička M.,
- Lampoudis C.,
- Langer C.,
- Leal-Cidoncha E.,
- Lederer C.,
- Leeb H.,
- Leong L.S.,
- Lerendegui-Marco J.,
- Licata M.,
- Losito R.,
- Manousos A.,
- Marganiec J.,
- Martínez T.,
- Massimi C.,
- Mastinu P.,
- Mendoza E.,
- Mengoni A.,
- Milazzo P.M.,
- Mingrone F.,
- Mirea M.,
- Mondelaers W.,
- Paradela C.,
- Pavlik A.,
- Perkowski J.,
- Plompen A.J.M.,
- Praena J.,
- Quesada J.M.,
- Rauscher T.,
- Reifarth R.,
- Riego-Perez A.,
- Robles M.,
- Roman F.,
- Rubbia C.,
- Ryan J.A.,
- Sabaté-Gilarte M.,
- Sarmento R.,
- Saxena A.,
- Schillebeeckx P.,
- Schmidt S.,
- Schumann D.,
- Sedyshev P.,
- Tagliente G.,
- Tain J.L.,
- Tarifeño-Saldivia A.,
- Tarrío D.,
- Tassan-Got L.,
- Tsinganis A.,
- Valenta S.,
- Vannini G.,
- Variale V.,
- Vaz P.,
- Ventura A.,
- Versaci R.,
- Vlachoudis V.,
- Vlastou R.,
- Wallner A.,
- Ware T.,
- Weigand M.,
- Weiss C.,
- Wright T.,
- Žugec P.,
Affiliations
- Mastromarco M.
- Istituto Nazionale di Fisica Nucleare
- Barbagallo M.
- Istituto Nazionale di Fisica Nucleare
- Vermeulen M.J.
- University of
- Colonna N.
- Istituto Nazionale di Fisica Nucleare
- Altstadt S.
- Goethe University
- Andrzejewski J.
- University of
- Audouin L.
- Institut de Physique Nucléaire, CNRS-IN2P3, Univ. Paris-Sud, Université Paris-Saclay
- Bécares V.
- Centro de Investigaciones Energeticas Medioambientales y Tecnológicas
- Bečvář F.
- Charles University
- Belloni F.
- CEA Saclay
- Berthoumieux E.
- CEA Saclay
- Billowes J.
- University of
- Bosnar D.
- University of
- Brugger M.
- European Organization for Nuclear Research
- Calviño F.
- Universitat Politècnica
- Calviani M.
- European Organization for Nuclear Research
- Cano-Ott D.
- Centro de Investigaciones Energeticas Medioambientales y Tecnológicas
- Carrapiço C.
- Instituto Superior Técnico
- Cerutti F.
- European Organization for Nuclear Research
- Chiaveri E.
- CEA Saclay
- Chin M.
- European Organization for Nuclear Research
- Cortés G.
- Universitat Politècnica
- Cortés-Giraldo M.A.
- Universidad de Sevilla
- Diakaki M.
- National Technical University of
- Domingo-Pardo C.
- Instituto de Física Corpuscular
- Durán I.
- University of Santiago
- Dzysiuk N.
- Istituto Nazionale di Fisica Nucleare
- Eleftheriadis C.
- Aristotle University of Thessaloniki
- Ferrari A.
- European Organization for Nuclear Research
- Fraval K.
- CEA Saclay
- Furman V.
- Joint Institute for Nuclear Research (JINR)
- Gómez-Hornillos M.B.
- Universitat Politècnica
- Ganesan S.
- Bhabha Atomic Research Centre
- García A.R.
- Centro de Investigaciones Energeticas Medioambientales y Tecnológicas
- Giubrone G.
- Instituto de Física Corpuscular
- Gonçalves I.F.
- Instituto Superior Técnico
- González E.
- Centro de Investigaciones Energeticas Medioambientales y Tecnológicas
- Goverdovski A.
- Institute of Physics and Power Engineering (IPPE)
- Griesmayer E.
- Technische Universität
- Guerrero C.
- European Organization for Nuclear Research
- Gunsing F.
- CEA Saclay
- Gurusamy P.
- Bhabha Atomic Research Centre
- Heftrich T.
- Goethe University
- Heinitz S.
- Paul Scherrer Institut (PSI)
- Hernández-Prieto A.
- Universitat Politècnica
- Heyse J.
- European Commission, Joint Research Centre, Geel
- Jenkins D.G.
- University of
- Jericha E.
- Technische Universität
- Käppeler F.
- Tokyo Institute of
- Kadi Y.
- European Organization for Nuclear Research
- Karadimos D.
- National Technical University of
- Katabuchi T.
- Oak Ridge National Laboratory (ORNL)
- Ketlerov V.
- Institute of Physics and Power Engineering (IPPE)
- Khryachkov V.
- Institute of Physics and Power Engineering (IPPE)
- Koehler P.
- University of Vienna, Faculty of Physics
- Kokkoris M.
- National Technical University of
- Kroll J.
- Charles University
- Krtička M.
- Charles University
- Lampoudis C.
- CEA Saclay
- Langer C.
- Goethe University
- Leal-Cidoncha E.
- University of Santiago
- Lederer C.
- Istituto Nazionale di Fisica Nucleare
- Leeb H.
- Technische Universität
- Leong L.S.
- Institut de Physique Nucléaire, CNRS-IN2P3, Univ. Paris-Sud, Université Paris-Saclay
- Lerendegui-Marco J.
- Universidad de Sevilla
- Licata M.
- Losito R.
- European Organization for Nuclear Research
- Manousos A.
- Aristotle University of Thessaloniki
- Marganiec J.
- University of
- Martínez T.
- Centro de Investigaciones Energeticas Medioambientales y Tecnológicas
- Massimi C.
- Mastinu P.
- Istituto Nazionale di Fisica Nucleare
- Mendoza E.
- Centro de Investigaciones Energeticas Medioambientales y Tecnológicas
- Mengoni A.
- Istituto Nazionale di Fisica Nucleare
- Milazzo P.M.
- Horia Hulubei National Institute of Physics and
- Mingrone F.
- Dipartimento di Fisica e Astronomia, Università di
- Mirea M.
- Department of Physics
- Mondelaers W.
- European Commission, Joint Research Centre, Geel
- Paradela C.
- University of Santiago
- Pavlik A.
- Istituto Nazionale di Fisica Nucleare
- Perkowski J.
- University of
- Plompen A.J.M.
- European Commission, Joint Research Centre, Geel
- Praena J.
- Universidad de Sevilla
- Quesada J.M.
- Universidad de Sevilla
- Rauscher T.
- Australian National University
- Reifarth R.
- Goethe University
- Riego-Perez A.
- Universitat Politècnica
- Robles M.
- University of Santiago
- Roman F.
- Department of Physics
- Rubbia C.
- European Organization for Nuclear Research
- Ryan J.A.
- University of
- Sabaté-Gilarte M.
- Universidad de Sevilla
- Sarmento R.
- Instituto Superior Técnico
- Saxena A.
- Bhabha Atomic Research Centre
- Schillebeeckx P.
- European Commission, Joint Research Centre, Geel
- Schmidt S.
- Goethe University
- Schumann D.
- Paul Scherrer Institut (PSI)
- Sedyshev P.
- Joint Institute for Nuclear Research (JINR)
- Tagliente G.
- Istituto Nazionale di Fisica Nucleare
- Tain J.L.
- Instituto de Física Corpuscular
- Tarifeño-Saldivia A.
- Instituto de Física Corpuscular
- Tarrío D.
- University of Santiago
- Tassan-Got L.
- Institut de Physique Nucléaire, CNRS-IN2P3, Univ. Paris-Sud, Université Paris-Saclay
- Tsinganis A.
- European Organization for Nuclear Research
- Valenta S.
- Charles University
- Vannini G.
- Variale V.
- Istituto Nazionale di Fisica Nucleare
- Vaz P.
- Instituto Superior Técnico
- Ventura A.
- Dipartimento di Fisica e Astronomia, Università di
- Versaci R.
- European Organization for Nuclear Research
- Vlachoudis V.
- European Organization for Nuclear Research
- Vlastou R.
- National Technical University of
- Wallner A.
- Ware T.
- University of
- Weigand M.
- Goethe University
- Weiss C.
- Technische Universität
- Wright T.
- University of
- Žugec P.
- University of
- DOI
- https://doi.org/10.1051/epjconf/201714611054
- Journal volume & issue
-
Vol. 146
p. 11054
Abstract
The 236U isotope plays an important role in nuclear systems, both for future and currently operating ones. The actual knowledge of the capture reaction of this isotope is satisfactory in the thermal region, but it is considered insufficient for Fast Reactor and ADS applications. For this reason the 236U(n, γ) reaction cross-section has been measured for the first time in the whole energy region from thermal energy up to 1 MeV at the n_TOF facility with two different detection systems: an array of C6D6 detectors, employing the total energy deposited method, and a FX1 total absorption calorimeter (TAC), made of 40 BaF2 crystals. The two n_TOF data sets agree with each other within the statistical uncertainty in the Resolved Resonance Region up to 800 eV, while sizable differences (up to ≃ 20%) are found relative to the current evaluated data libraries. Moreover two new resonances have been found in the n_TOF data. In the Unresolved Resonance Region up to 200 keV, the n_TOF results show a reasonable agreement with previous measurements and evaluated data.