The n_TOF facility: Neutron beams for challenging future measurements at CERN
The CERN n_TOF neutron beam facility is characterized by a very high instantaneous neutron flux, excellent TOF resolution at the 185 m long flight path (EAR-1), low intrinsic background and coverage of a wide range of neutron energies, from thermal to a few GeV. These characteristics provide a uniqu...
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Format: | Article |
Language: | English |
Published: |
EDP Sciences
2017-01-01
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Series: | EPJ Web of Conferences |
Online Access: | https://doi.org/10.1051/epjconf/201714603001 |
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DOAJ |
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English |
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DOAJ |
author |
Chiaveri E. Aberle O. Andrzejewski J. Audouin L. Bacak M. Balibrea J. Barbagallo M. Bečvář F. Berthoumieux E. Billowes J. Bosnar D. Brown A. Caamaño M. Calviño F. Calviani M. Cano-Ott D. Cardella R. Casanovas A. Cerutti F. Chen Y.H. 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. Göbel K. García A.R. Gawlik A. Gilardoni S. Glodariu T. Gonçalves I.F. González E. Griesmayer E. Guerrero C. Gunsing F. Harada H. Heinitz S. Heyse J. Jenkins D.G. Jericha E. Käppeler F. Kadi Y. Kalamara A. Kavrigin P. Kimura A. Kivel N. Kokkoris M. Krtička M. Kurtulgil D. Leal-Cidoncha E. Lederer C. Leeb H. Lerendegui-Marco J. Meo S. Lo Lonsdale S.J. Macina D. Marganiec J. Martínez T. Masi A. Massimi C. Mastinu P. Mastromarco M. Maugeri E.A. Mazzone A. Mendoza E. Mengoni A. Milazzo P.M. Mingrone F. Musumarra A. Negret A. Nolte R. Oprea A. Patronis N. Pavlik A. Perkowski J. Porras I. Praena J. Quesada J.M. Radeck D. Rauscher T. Reifarth R. Rubbia C. Ryan J.A. Sabaté-Gilarte M. Saxena A. Schillebeeckx P. Schumann D. Smith A.G. Sosnin N.V. 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. Vlachoudis V. Vlastou R. Wallner A. Warren S. Woods P.J. Wright T. Žugec P. |
spellingShingle |
Chiaveri E. Aberle O. Andrzejewski J. Audouin L. Bacak M. Balibrea J. Barbagallo M. Bečvář F. Berthoumieux E. Billowes J. Bosnar D. Brown A. Caamaño M. Calviño F. Calviani M. Cano-Ott D. Cardella R. Casanovas A. Cerutti F. Chen Y.H. 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. Göbel K. García A.R. Gawlik A. Gilardoni S. Glodariu T. Gonçalves I.F. González E. Griesmayer E. Guerrero C. Gunsing F. Harada H. Heinitz S. Heyse J. Jenkins D.G. Jericha E. Käppeler F. Kadi Y. Kalamara A. Kavrigin P. Kimura A. Kivel N. Kokkoris M. Krtička M. Kurtulgil D. Leal-Cidoncha E. Lederer C. Leeb H. Lerendegui-Marco J. Meo S. Lo Lonsdale S.J. Macina D. Marganiec J. Martínez T. Masi A. Massimi C. Mastinu P. Mastromarco M. Maugeri E.A. Mazzone A. Mendoza E. Mengoni A. Milazzo P.M. Mingrone F. Musumarra A. Negret A. Nolte R. Oprea A. Patronis N. Pavlik A. Perkowski J. Porras I. Praena J. Quesada J.M. Radeck D. Rauscher T. Reifarth R. Rubbia C. Ryan J.A. Sabaté-Gilarte M. Saxena A. Schillebeeckx P. Schumann D. Smith A.G. Sosnin N.V. 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. Vlachoudis V. Vlastou R. Wallner A. Warren S. Woods P.J. Wright T. Žugec P. The n_TOF facility: Neutron beams for challenging future measurements at CERN EPJ Web of Conferences |
author_facet |
Chiaveri E. Aberle O. Andrzejewski J. Audouin L. Bacak M. Balibrea J. Barbagallo M. Bečvář F. Berthoumieux E. Billowes J. Bosnar D. Brown A. Caamaño M. Calviño F. Calviani M. Cano-Ott D. Cardella R. Casanovas A. Cerutti F. Chen Y.H. 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. Göbel K. García A.R. Gawlik A. Gilardoni S. Glodariu T. Gonçalves I.F. González E. Griesmayer E. Guerrero C. Gunsing F. Harada H. Heinitz S. Heyse J. Jenkins D.G. Jericha E. Käppeler F. Kadi Y. Kalamara A. Kavrigin P. Kimura A. Kivel N. Kokkoris M. Krtička M. Kurtulgil D. Leal-Cidoncha E. Lederer C. Leeb H. Lerendegui-Marco J. Meo S. Lo Lonsdale S.J. Macina D. Marganiec J. Martínez T. Masi A. Massimi C. Mastinu P. Mastromarco M. Maugeri E.A. Mazzone A. Mendoza E. Mengoni A. Milazzo P.M. Mingrone F. Musumarra A. Negret A. Nolte R. Oprea A. Patronis N. Pavlik A. Perkowski J. Porras I. Praena J. Quesada J.M. Radeck D. Rauscher T. Reifarth R. Rubbia C. Ryan J.A. Sabaté-Gilarte M. Saxena A. Schillebeeckx P. Schumann D. Smith A.G. Sosnin N.V. 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. Vlachoudis V. Vlastou R. Wallner A. Warren S. Woods P.J. Wright T. Žugec P. |
author_sort |
Chiaveri E. |
title |
The n_TOF facility: Neutron beams for challenging future measurements at CERN |
title_short |
The n_TOF facility: Neutron beams for challenging future measurements at CERN |
title_full |
The n_TOF facility: Neutron beams for challenging future measurements at CERN |
title_fullStr |
The n_TOF facility: Neutron beams for challenging future measurements at CERN |
title_full_unstemmed |
The n_TOF facility: Neutron beams for challenging future measurements at CERN |
title_sort |
n_tof facility: neutron beams for challenging future measurements at cern |
publisher |
EDP Sciences |
series |
EPJ Web of Conferences |
issn |
2100-014X |
publishDate |
2017-01-01 |
description |
The CERN n_TOF neutron beam facility is characterized by a very high instantaneous neutron flux, excellent TOF resolution at the 185 m long flight path (EAR-1), low intrinsic background and coverage of a wide range of neutron energies, from thermal to a few GeV. These characteristics provide a unique possibility to perform high-accuracy measurements of neutron-induced reaction cross-sections and angular distributions of interest for fundamental and applied Nuclear Physics. Since 2001, the n_TOF Collaboration has collected a wealth of high quality nuclear data relevant for nuclear astrophysics, nuclear reactor technology, nuclear medicine, etc. The overall efficiency of the experimental program and the range of possible measurements has been expanded with the construction of a second experimental area (EAR-2), located 20 m on the vertical of the n_TOF spallation target. This upgrade, which benefits from a neutron flux 30 times higher than in EAR-1, provides a substantial extension in measurement capabilities, opening the possibility to collect data on neutron cross-section of isotopes with short half-lives or available in very small amounts. This contribution will outline the main characteristics of the n_TOF facility, with special emphasis on the new experimental area. In particular, we will discuss the innovative features of the EAR-2 neutron beam that make possible to perform very challenging measurements on short-lived radioisotopes or sub-mg samples, out of reach up to now at other neutron facilities around the world. Finally, the future perspectives of the facility will be presented. |
url |
https://doi.org/10.1051/epjconf/201714603001 |
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doaj-b5d6ab2ad7df4a17959971b2a47ddc4f2021-08-02T07:45:37ZengEDP SciencesEPJ Web of Conferences2100-014X2017-01-011460300110.1051/epjconf/201714603001epjconf-nd2016_03001The n_TOF facility: Neutron beams for challenging future measurements at CERNChiaveri E.Aberle O.0Andrzejewski J.1Audouin L.2Bacak M.Balibrea J.3Barbagallo M.4Bečvář F.5Berthoumieux E.6Billowes J.7Bosnar D.8Brown A.9Caamaño M.10Calviño F.11Calviani M.12Cano-Ott D.13Cardella R.14Casanovas A.15Cerutti F.16Chen Y.H.17Colonna N.18Cortés G.19Cortés-Giraldo M.A.20Cosentino L.21Damone L.A.Diakaki M.22Domingo-Pardo C.23Dressler R.24Dupont E.25Durán I.26Fernández-Domínguez B.27Ferrari A.28Ferreira P.29Finocchiaro P.30Göbel K.31García A.R.32Gawlik A.33Gilardoni S.34Glodariu T.35Gonçalves I.F.36González E.37Griesmayer E.38Guerrero C.39Gunsing F.Harada H.40Heinitz S.41Heyse J.42Jenkins D.G.43Jericha E.44Käppeler F.45Kadi Y.46Kalamara A.47Kavrigin P.48Kimura A.49Kivel N.50Kokkoris M.51Krtička M.52Kurtulgil D.53Leal-Cidoncha E.54Lederer C.55Leeb H.56Lerendegui-Marco J.57Meo S. LoLonsdale S.J.58Macina D.59Marganiec J.Martínez T.60Masi A.61Massimi C.Mastinu P.62Mastromarco M.63Maugeri E.A.64Mazzone A.Mendoza E.65Mengoni A.66Milazzo P.M.67Mingrone F.68Musumarra A.Negret A.69Nolte R.70Oprea A.71Patronis N.72Pavlik A.73Perkowski J.74Porras I.75Praena J.76Quesada J.M.77Radeck D.78Rauscher T.Reifarth R.79Rubbia C.80Ryan J.A.81Sabaté-Gilarte M.Saxena A.82Schillebeeckx P.83Schumann D.84Smith A.G.85Sosnin N.V.86Stamatopoulos A.87Tagliente G.88Tain J.L.89Tarifeño-Saldivia A.90Tassan-Got L.91Tsinganis A.92Valenta S.93Vannini G.Variale V.94Vaz P.95Ventura A.96Vlachoudis V.97Vlastou R.98Wallner A.99Warren S.100Woods P.J.101Wright T.102Žugec P.European Organization for Nuclear ResearchUniversity ofInstitut de Physique Nucléaire, CNRS-IN2P3, Univ. Paris-Sud, Université Paris-SaclayCentro de Investigaciones Energéticas Medioambientales y TecnológicasIstituto Nazionale di Fisica NucleareCharles UniversityCEA Saclay, IrfuUniversity ofUniversity ofUniversity ofUniversity of SantiagoUniversitat PolitècnicaEuropean Organization for Nuclear ResearchCentro de Investigaciones Energéticas Medioambientales y TecnológicasEuropean Organization for Nuclear ResearchUniversitat PolitècnicaEuropean Organization for Nuclear ResearchInstitut de Physique Nucléaire, CNRS-IN2P3, Univ. Paris-Sud, Université Paris-SaclayIstituto Nazionale di Fisica NucleareUniversitat PolitècnicaUniversidad deINFN Laboratori Nazionali del SudCEA Saclay, IrfuInstituto de Física Corpuscular, Universidad dePaul Scherrer Institut (PSI)CEA Saclay, IrfuUniversity of SantiagoUniversity of SantiagoEuropean Organization for Nuclear ResearchInstituto Superior TécnicoINFN Laboratori Nazionali del SudGoethe UniversityCentro de Investigaciones Energéticas Medioambientales y TecnológicasUniversity ofEuropean Organization for Nuclear ResearchHoria Hulubei National Institute of Physics and NuclearInstituto Superior TécnicoCentro de Investigaciones Energéticas Medioambientales y TecnológicasTechnische UniversitätUniversidad deJapan Atomic Energy Agency (JAEA)Paul Scherrer Institut (PSI)European Commission, Joint Research CentreUniversity ofTechnische UniversitätKarlsruhe Institute of TechnologyEuropean Organization for Nuclear ResearchNational Technical University ofTechnische UniversitätJapan Atomic Energy Agency (JAEA)Paul Scherrer Institut (PSI)National Technical University ofCharles UniversityGoethe UniversityUniversity of SantiagoSchool of Physics and Astronomy, University ofTechnische UniversitätUniversidad deSchool of Physics and Astronomy, University ofEuropean Organization for Nuclear ResearchCentro de Investigaciones Energéticas Medioambientales y TecnológicasEuropean Organization for Nuclear ResearchIstituto Nazionale di Fisica NucleareIstituto Nazionale di Fisica NuclearePaul Scherrer Institut (PSI)Centro de Investigaciones Energéticas Medioambientales y TecnológicasAgenzia nazionale per le nuove tecnologie (ENEA)Istituto Nazionale di Fisica NucleareEuropean Organization for Nuclear ResearchHoria Hulubei National Institute of Physics and NuclearPhysikalisch-Technische Bundesanstalt (PTB)Horia Hulubei National Institute of Physics and NuclearUniversity ofUniversity of Vienna, Faculty of PhysicsUniversity ofUniversity ofUniversity ofUniversidad dePhysikalisch-Technische Bundesanstalt (PTB)Goethe UniversityEuropean Organization for Nuclear ResearchUniversity ofBhabha Atomic Research CentreEuropean Commission, Joint Research CentrePaul Scherrer Institut (PSI)University ofUniversity ofNational Technical University ofIstituto Nazionale di Fisica NucleareInstituto de Física Corpuscular, Universidad deUniversitat PolitècnicaInstitut de Physique Nucléaire, CNRS-IN2P3, Univ. Paris-Sud, Université Paris-SaclayEuropean Organization for Nuclear ResearchCharles UniversityIstituto Nazionale di Fisica NucleareInstituto Superior TécnicoIstituto Nazionale di Fisica NucleareEuropean Organization for Nuclear ResearchNational Technical University ofAustralian National UniversityUniversity ofSchool of Physics and Astronomy, University ofUniversity ofThe CERN n_TOF neutron beam facility is characterized by a very high instantaneous neutron flux, excellent TOF resolution at the 185 m long flight path (EAR-1), low intrinsic background and coverage of a wide range of neutron energies, from thermal to a few GeV. These characteristics provide a unique possibility to perform high-accuracy measurements of neutron-induced reaction cross-sections and angular distributions of interest for fundamental and applied Nuclear Physics. Since 2001, the n_TOF Collaboration has collected a wealth of high quality nuclear data relevant for nuclear astrophysics, nuclear reactor technology, nuclear medicine, etc. The overall efficiency of the experimental program and the range of possible measurements has been expanded with the construction of a second experimental area (EAR-2), located 20 m on the vertical of the n_TOF spallation target. This upgrade, which benefits from a neutron flux 30 times higher than in EAR-1, provides a substantial extension in measurement capabilities, opening the possibility to collect data on neutron cross-section of isotopes with short half-lives or available in very small amounts. This contribution will outline the main characteristics of the n_TOF facility, with special emphasis on the new experimental area. In particular, we will discuss the innovative features of the EAR-2 neutron beam that make possible to perform very challenging measurements on short-lived radioisotopes or sub-mg samples, out of reach up to now at other neutron facilities around the world. Finally, the future perspectives of the facility will be presented.https://doi.org/10.1051/epjconf/201714603001 |