Measurement of the 242Pu(n, γ) cross section from thermal to 500 keV at the Budapest research reactor and CERN n_TOF-EAR1 facilities
The design and operation of innovative nuclear systems requires a better knowledge of the capture and fission cross sections of the Pu isotopes. For the case of capture on 242Pu, a reduction of the uncertainty in the fast region down to 8-12% is required. Moreover, aiming at improving the evaluation...
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Format: | Article |
Language: | English |
Published: |
EDP Sciences
2020-01-01
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Series: | EPJ Web of Conferences |
Online Access: | https://www.epj-conferences.org/articles/epjconf/pdf/2020/15/epjconf_nd2019_01019.pdf |
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doaj-0a84215504a04380a581a1c5c029c248 |
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collection |
DOAJ |
language |
English |
format |
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sources |
DOAJ |
author |
Lerendegui-Marco J Guerrero C. Mendoza E. Quesada J. M. Eberhardt K. Junghans A. Krtiička M. Belgya T. Maróti B. Aberle O. Andrzejewski J. Audouin L. Bécares V. Bacak M. Balibrea J. Barbagallo M. Barros S. Bečvář F. Beinrucker C. Berthoumieux E. Billowes J. Bosnar D. Brugger M. Caamaño M. Calviño F. Calviani M. Cano-Ott D Cardella R. Casanovas A. Castelluccio D. M. Cerutti F. Chen Y. H. Chiaveri E. Colonna N. Cortés G. Cortés-Giraldo M. A. Cosentino L. Damone L. A. Diakaki M. Domingo-Pardo C Dressler R. Dupont E. Durán I. Fernández-Domínguez B. Ferrari A. Ferreira P. Finocchiaro P. Furman V. Göbel K. García A. R. Gawlik A. Glodariu T. Gonçalves I. F. González-Romero E. Goverdovski A. Griesmayer E. Gunsing F. Harada H. Heftrich T. Heinitz S. Heyse J. Jenkins D. G. Jericha E. Käppeler F. Kadi Y. Katabuchi T. Kavrigin P. Ketlerov V. Khryachkov V. Kimura A. Kivel N. Knapova I. Kokkoris M. Leal-Cidoncha E Lederer C. Leeb H. Lo Meo S. Lonsdale S. J. Losito R. Macina D. Marganiec J. Martínez T. Massimi C. Mastinu P. Mastromarco M. Matteucci F. Maugeri E. A. Mengoni A. Milazzo P. M. Mingrone F. Mirea M. Montesano S. Musumarra A. Nolte R. Oprea A. Patronis N. Pavlik A. Perkowski J. Porras J. I. Praena J. Rajeev K. Rauscher T. Reifarth R. Riego-Perez A Rout P. C. Rubbia C. Ryan J. A. Sabaté-Gilarte M. Saxena A. Schillebeeckx P. Schmidt S. Schumann D. Sedyshev P. Smith A. G. Stamatopoulos A. Tagliente G. Tain J. L. Tarifeño-Saldivia A. Tassan-Got L Tsinganis A. Valenta S. Vannini G. Variale V. Vaz P. Ventura A. Vescovi D. Vlachoudis V. Vlastou R. Wallner A. Warren S. Weigand M. Weiss C. Wolf C. Woods P. J. Wright T. Žugec P. |
spellingShingle |
Lerendegui-Marco J Guerrero C. Mendoza E. Quesada J. M. Eberhardt K. Junghans A. Krtiička M. Belgya T. Maróti B. Aberle O. Andrzejewski J. Audouin L. Bécares V. Bacak M. Balibrea J. Barbagallo M. Barros S. Bečvář F. Beinrucker C. Berthoumieux E. Billowes J. Bosnar D. Brugger M. Caamaño M. Calviño F. Calviani M. Cano-Ott D Cardella R. Casanovas A. Castelluccio D. M. Cerutti F. Chen Y. H. Chiaveri E. Colonna N. Cortés G. Cortés-Giraldo M. A. Cosentino L. Damone L. A. Diakaki M. Domingo-Pardo C Dressler R. Dupont E. Durán I. Fernández-Domínguez B. Ferrari A. Ferreira P. Finocchiaro P. Furman V. Göbel K. García A. R. Gawlik A. Glodariu T. Gonçalves I. F. González-Romero E. Goverdovski A. Griesmayer E. Gunsing F. Harada H. Heftrich T. Heinitz S. Heyse J. Jenkins D. G. Jericha E. Käppeler F. Kadi Y. Katabuchi T. Kavrigin P. Ketlerov V. Khryachkov V. Kimura A. Kivel N. Knapova I. Kokkoris M. Leal-Cidoncha E Lederer C. Leeb H. Lo Meo S. Lonsdale S. J. Losito R. Macina D. Marganiec J. Martínez T. Massimi C. Mastinu P. Mastromarco M. Matteucci F. Maugeri E. A. Mengoni A. Milazzo P. M. Mingrone F. Mirea M. Montesano S. Musumarra A. Nolte R. Oprea A. Patronis N. Pavlik A. Perkowski J. Porras J. I. Praena J. Rajeev K. Rauscher T. Reifarth R. Riego-Perez A Rout P. C. Rubbia C. Ryan J. A. Sabaté-Gilarte M. Saxena A. Schillebeeckx P. Schmidt S. Schumann D. Sedyshev P. Smith A. G. Stamatopoulos A. Tagliente G. Tain J. L. Tarifeño-Saldivia A. Tassan-Got L Tsinganis A. Valenta S. Vannini G. Variale V. Vaz P. Ventura A. Vescovi D. Vlachoudis V. Vlastou R. Wallner A. Warren S. Weigand M. Weiss C. Wolf C. Woods P. J. Wright T. Žugec P. Measurement of the 242Pu(n, γ) cross section from thermal to 500 keV at the Budapest research reactor and CERN n_TOF-EAR1 facilities EPJ Web of Conferences |
author_facet |
Lerendegui-Marco J Guerrero C. Mendoza E. Quesada J. M. Eberhardt K. Junghans A. Krtiička M. Belgya T. Maróti B. Aberle O. Andrzejewski J. Audouin L. Bécares V. Bacak M. Balibrea J. Barbagallo M. Barros S. Bečvář F. Beinrucker C. Berthoumieux E. Billowes J. Bosnar D. Brugger M. Caamaño M. Calviño F. Calviani M. Cano-Ott D Cardella R. Casanovas A. Castelluccio D. M. Cerutti F. Chen Y. H. Chiaveri E. Colonna N. Cortés G. Cortés-Giraldo M. A. Cosentino L. Damone L. A. Diakaki M. Domingo-Pardo C Dressler R. Dupont E. Durán I. Fernández-Domínguez B. Ferrari A. Ferreira P. Finocchiaro P. Furman V. Göbel K. García A. R. Gawlik A. Glodariu T. Gonçalves I. F. González-Romero E. Goverdovski A. Griesmayer E. Gunsing F. Harada H. Heftrich T. Heinitz S. Heyse J. Jenkins D. G. Jericha E. Käppeler F. Kadi Y. Katabuchi T. Kavrigin P. Ketlerov V. Khryachkov V. Kimura A. Kivel N. Knapova I. Kokkoris M. Leal-Cidoncha E Lederer C. Leeb H. Lo Meo S. Lonsdale S. J. Losito R. Macina D. Marganiec J. Martínez T. Massimi C. Mastinu P. Mastromarco M. Matteucci F. Maugeri E. A. Mengoni A. Milazzo P. M. Mingrone F. Mirea M. Montesano S. Musumarra A. Nolte R. Oprea A. Patronis N. Pavlik A. Perkowski J. Porras J. I. Praena J. Rajeev K. Rauscher T. Reifarth R. Riego-Perez A Rout P. C. Rubbia C. Ryan J. A. Sabaté-Gilarte M. Saxena A. Schillebeeckx P. Schmidt S. Schumann D. Sedyshev P. Smith A. G. Stamatopoulos A. Tagliente G. Tain J. L. Tarifeño-Saldivia A. Tassan-Got L Tsinganis A. Valenta S. Vannini G. Variale V. Vaz P. Ventura A. Vescovi D. Vlachoudis V. Vlastou R. Wallner A. Warren S. Weigand M. Weiss C. Wolf C. Woods P. J. Wright T. Žugec P. |
author_sort |
Lerendegui-Marco J |
title |
Measurement of the 242Pu(n, γ) cross section from thermal to 500 keV at the Budapest research reactor and CERN n_TOF-EAR1 facilities |
title_short |
Measurement of the 242Pu(n, γ) cross section from thermal to 500 keV at the Budapest research reactor and CERN n_TOF-EAR1 facilities |
title_full |
Measurement of the 242Pu(n, γ) cross section from thermal to 500 keV at the Budapest research reactor and CERN n_TOF-EAR1 facilities |
title_fullStr |
Measurement of the 242Pu(n, γ) cross section from thermal to 500 keV at the Budapest research reactor and CERN n_TOF-EAR1 facilities |
title_full_unstemmed |
Measurement of the 242Pu(n, γ) cross section from thermal to 500 keV at the Budapest research reactor and CERN n_TOF-EAR1 facilities |
title_sort |
measurement of the 242pu(n, γ) cross section from thermal to 500 kev at the budapest research reactor and cern n_tof-ear1 facilities |
publisher |
EDP Sciences |
series |
EPJ Web of Conferences |
issn |
2100-014X |
publishDate |
2020-01-01 |
description |
The design and operation of innovative nuclear systems requires a better knowledge of the capture and fission cross sections of the Pu isotopes. For the case of capture on 242Pu, a reduction of the uncertainty in the fast region down to 8-12% is required. Moreover, aiming at improving the evaluation of the fast energy range in terms of average parameters, the OECD NEA High Priority Request List (HPRL) requests high-resolution capture measurements with improved accuracy below 2 keV. The current uncertainties also affect the thermal point, where previous experiments deviate from each other by 20%. A fruitful collaboration betwen JGU Mainz and HZ Dresden-Rossendorf within the EC CHANDA project resulted in a 242Pu sample consisting of a stack of seven fission-like targets making a total of 95(4) mg of 242Pu electrodeposited on thin (11.5 μm) aluminum backings. This contribution presents the results of a set of measurements of the 242Pu(n, γ) cross section from thermal to 500 keV combining different neutron beams and techniques. The thermal point was determined at the Budapest Research Reactor by means of Neutron Activation Analysis and Prompt Gamma Analysis, and the resolved (1 eV - 4 keV) and unresolved (1 - 500 keV) resonance regions were measured using a set of four Total Energy detectors at the CERN n_TOF-EAR1. |
url |
https://www.epj-conferences.org/articles/epjconf/pdf/2020/15/epjconf_nd2019_01019.pdf |
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doaj-0a84215504a04380a581a1c5c029c2482021-08-02T21:58:49ZengEDP SciencesEPJ Web of Conferences2100-014X2020-01-012390101910.1051/epjconf/202023901019epjconf_nd2019_01019Measurement of the 242Pu(n, γ) cross section from thermal to 500 keV at the Budapest research reactor and CERN n_TOF-EAR1 facilitiesLerendegui-Marco J0Guerrero C.1Mendoza E.2Quesada J. M.3Eberhardt K.4Junghans A.5Krtiička M.6Belgya T.7Maróti B.8Aberle O.9Andrzejewski J.10Audouin L.11Bécares V.12Bacak M.13Balibrea J.14Barbagallo M.15Barros S.16Bečvář F.17Beinrucker C.18Berthoumieux E.19Billowes J.20Bosnar D.21Brugger M.22Caamaño M.23Calviño F.24Calviani M.25Cano-Ott D26Cardella R.27Casanovas A.28Castelluccio D. M.Cerutti F.29Chen Y. H.30Chiaveri E.31Colonna N.32Cortés G.33Cortés-Giraldo M. A.34Cosentino L.35Damone L. A.Diakaki M.36Domingo-Pardo C37Dressler R.38Dupont E.39Durán I.40Fernández-Domínguez B.41Ferrari A.42Ferreira P.43Finocchiaro P.44Furman V.45Göbel K.46García A. R.47Gawlik A.48Glodariu T.Gonçalves I. F.49González-Romero E.50Goverdovski A.51Griesmayer E.52Gunsing F.Harada H.53Heftrich T.54Heinitz S.55Heyse J.56Jenkins D. G.57Jericha E.58Käppeler F.59Kadi Y.60Katabuchi T.61Kavrigin P.62Ketlerov V.63Khryachkov V.64Kimura A.65Kivel N.66Knapova I.67Kokkoris M.68Leal-Cidoncha E69Lederer C.70Leeb H.71Lo Meo S.Lonsdale S. J.72Losito R.73Macina D.74Marganiec J.75Martínez T.76Massimi C.Mastinu P.77Mastromarco M.78Matteucci F.Maugeri E. A.79Mengoni A.80Milazzo P. M.81Mingrone F.82Mirea M.83Montesano S.84Musumarra A.Nolte R.85Oprea A.86Patronis N.87Pavlik A.88Perkowski J.89Porras J. I.Praena J.Rajeev K.90Rauscher T.Reifarth R.91Riego-Perez A92Rout P. C.93Rubbia C.94Ryan J. A.95Sabaté-Gilarte M.Saxena A.96Schillebeeckx P.97Schmidt S.98Schumann D.99Sedyshev P.100Smith A. G.101Stamatopoulos A.102Tagliente G.103Tain J. L.104Tarifeño-Saldivia A.105Tassan-Got L106Tsinganis A.107Valenta S.108Vannini G.Variale V.109Vaz P.110Ventura A.111Vescovi D.Vlachoudis V.112Vlastou R.113Wallner A.114Warren S.115Weigand M.116Weiss C.Wolf C.117Woods P. J.118Wright T.119Žugec P.Dpto. Física Atómica, Molecular y Nuclear, Universidad de SevillaIstituto Nazionale di Fisica NucleareCentro de Investigaciones Energéticas Medioambientales y Tecnológicas (CIEMAT)Dpto. Física Atómica, Molecular y Nuclear, Universidad de SevillaJohannes Gutenberg Universität MainzHelmholtz-Zentrum Dresden-RossendorfCharles UniversityNuclear Analysis and Radiography Department, Hungarian Academy of SciencesNuclear Analysis and Radiography Department, Hungarian Academy of SciencesEuropean Organization for Nuclear Research (CERN)University of LodzInstitut de Physique Nucléaire, CNRS-IN2P3, Univ. Paris-Sud, Université Paris-SaclayCentro de Investigaciones Energéticas Medioambientales y Tecnológicas (CIEMAT)Technische Universität WienCentro de Investigaciones Energéticas Medioambientales y Tecnológicas (CIEMAT)Istituto Nazionale di Fisica NucleareInstituto Superior TécnicoCharles UniversityGoethe University FrankfurtCEA Irfu, Université Paris-SaclayUniversity of ManchesterDepartment of Physics, Faculty of Science, University of ZagrebEuropean Organization for Nuclear Research (CERN)University of Santiago de CompostelaUniversitat Politècnica de CatalunyaEuropean Organization for Nuclear Research (CERN)Centro de Investigaciones Energéticas Medioambientales y Tecnológicas (CIEMAT)European Organization for Nuclear Research (CERN)Universitat Politècnica de CatalunyaEuropean Organization for Nuclear Research (CERN)Institut de Physique Nucléaire, CNRS-IN2P3, Univ. Paris-Sud, Université Paris-SaclayEuropean Organization for Nuclear Research (CERN)Istituto Nazionale di Fisica NucleareUniversitat Politècnica de CatalunyaDpto. Física Atómica, Molecular y Nuclear, Universidad de SevillaINFN Laboratori Nazionali del SudCEA Irfu, Université Paris-SaclayInstituto de Física Corpuscular, CSIC - Universidad de ValenciaPaul Scherrer Institut (PSI)CEA Irfu, Université Paris-SaclayUniversity of Santiago de CompostelaUniversity of Santiago de CompostelaEuropean Organization for Nuclear Research (CERN)Instituto Superior TécnicoINFN Laboratori Nazionali del SudJoint Institute for Nuclear Research (JINR)Goethe University FrankfurtCentro de Investigaciones Energéticas Medioambientales y Tecnológicas (CIEMAT)University of LodzInstituto Superior TécnicoCentro de Investigaciones Energéticas Medioambientales y Tecnológicas (CIEMAT)Institute of Physics and Power Engineering (IPPE)Technische Universität WienJapan Atomic Energy Agency (JAEA)Goethe University FrankfurtPaul Scherrer Institut (PSI)European Commission, Joint Research Centre, GeelUniversity of YorkTechnische Universität WienKarlsruhe Institute of Technology, Campus North, IKPEuropean Organization for Nuclear Research (CERN)Tokyo Institute of TechnologyTechnische Universität WienInstitute of Physics and Power Engineering (IPPE)Institute of Physics and Power Engineering (IPPE)Japan Atomic Energy Agency (JAEA)Paul Scherrer Institut (PSI)Charles UniversityNational Technical University of AthensUniversity of Santiago de CompostelaSchool of Physics and Astronomy, University of EdinburghTechnische Universität WienSchool of Physics and Astronomy, University of EdinburghEuropean Organization for Nuclear Research (CERN)European Organization for Nuclear Research (CERN)University of LodzCentro de Investigaciones Energéticas Medioambientales y Tecnológicas (CIEMAT)Istituto Nazionale di Fisica NucleareIstituto Nazionale di Fisica NuclearePaul Scherrer Institut (PSI)Agenzia nazionale per le nuove tecnologie (ENEA)Istituto Nazionale di Fisica Nucleare, Sezione di TriesteIstituto Nazionale di Fisica Nucleare, Sezione di BolognaHoria Hulubei National Institute of Physics and Nuclear EngineeringEuropean Organization for Nuclear Research (CERN)Physikalisch-Technische Bundesanstalt (PTB), Bundesallee 100Horia Hulubei National Institute of Physics and Nuclear EngineeringUniversity of IoanninaUniversity of Vienna, Faculty of PhysicsUniversity of LodzBhabha Atomic Research Centre (BARC)Goethe University FrankfurtUniversitat Politècnica de CatalunyaBhabha Atomic Research Centre (BARC)European Organization for Nuclear Research (CERN)University of ManchesterBhabha Atomic Research Centre (BARC)European Commission, Joint Research Centre, GeelGoethe University FrankfurtPaul Scherrer Institut (PSI)Joint Institute for Nuclear Research (JINR)University of ManchesterNational Technical University of AthensIstituto Nazionale di Fisica NucleareInstituto de Física Corpuscular, CSIC - Universidad de ValenciaInstituto de Física Corpuscular, CSIC - Universidad de ValenciaInstitut de Physique Nucléaire, CNRS-IN2P3, Univ. Paris-Sud, Université Paris-SaclayNational Technical University of AthensCharles UniversityIstituto Nazionale di Fisica NucleareInstituto Superior TécnicoIstituto Nazionale di Fisica Nucleare, Sezione di BolognaEuropean Organization for Nuclear Research (CERN)National Technical University of AthensAustralian National UniversityUniversity of ManchesterGoethe University FrankfurtGoethe University FrankfurtSchool of Physics and Astronomy, University of EdinburghUniversity of ManchesterThe design and operation of innovative nuclear systems requires a better knowledge of the capture and fission cross sections of the Pu isotopes. For the case of capture on 242Pu, a reduction of the uncertainty in the fast region down to 8-12% is required. Moreover, aiming at improving the evaluation of the fast energy range in terms of average parameters, the OECD NEA High Priority Request List (HPRL) requests high-resolution capture measurements with improved accuracy below 2 keV. The current uncertainties also affect the thermal point, where previous experiments deviate from each other by 20%. A fruitful collaboration betwen JGU Mainz and HZ Dresden-Rossendorf within the EC CHANDA project resulted in a 242Pu sample consisting of a stack of seven fission-like targets making a total of 95(4) mg of 242Pu electrodeposited on thin (11.5 μm) aluminum backings. This contribution presents the results of a set of measurements of the 242Pu(n, γ) cross section from thermal to 500 keV combining different neutron beams and techniques. The thermal point was determined at the Budapest Research Reactor by means of Neutron Activation Analysis and Prompt Gamma Analysis, and the resolved (1 eV - 4 keV) and unresolved (1 - 500 keV) resonance regions were measured using a set of four Total Energy detectors at the CERN n_TOF-EAR1.https://www.epj-conferences.org/articles/epjconf/pdf/2020/15/epjconf_nd2019_01019.pdf |