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Investigation of the $^{240}$Pu$(n,f)$ reaction at the n_TOF/EAR2 facility in the 9 meV–6 MeV range

Background: Nuclear waste management is considered amongst the major challenges in the field of nuclear energy. A possible means of addressing this issue is waste transmutation in advanced nuclear systems, whose operation requires a fast neutron spectrum. In this regard, the accurate knowledge of ne...

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Autores principales: Stamatopoulos, A, Tsinganis, A, Colonna, N, Kokkoris, M, Vlastou, R, Diakaki, M, Žugec, P, Schillebeeckx, P, Gunsing, F, Sabaté-Gilarte, M, Barbagallo, M, Aberle, O, Andrzejewski, J, Audouin, L, Bécares, V, Bacak, M, Balibrea, J, Barros, S, Bečvář, F, Beinrucker, C, Belloni, F, Berthoumieux, E, Billowes, J, Bosnar, D, Brugger, M, Caamaño, M, Lo Meo, S, Calviño, F, Calviani, M, Cano-Ott, D, Cerutti, F, Chiaveri, E, Cortés, G, Cortés-Giraldo, M A, Cosentino, L, Damone, L A, Deo, K, Domingo-Pardo, C, Dressler, R, Dupont, E, Durán, I, Fernández-Domínguez, B, Ferrari, A, Ferreira, P, Finocchiaro, P, Frost, R J W, Furman, V, Göbel, K, García, A R, Gheorghe, I, Glodariu, T, Gonçalves, I F, González-Romero, E, Goverdovski, A, Griesmayer, E, Guerrero, C, Harada, H, Heftrich, T, Heinitz, S, Hernández-Prieto, A, 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, Krtička, M, Leal-Cidoncha, E, Lederer, C, Leeb, H, Lerendegui-Marco, J, Licata, M, Losito, R, Macina, D, Marganiec, J, Martínez, T, Massimi, C, Mastinu, P, Mastromarco, M, Matteucci, F, Mendoza, E, Mengoni, A, Milazzo, P M, Mingrone, F, Mirea, M, Montesano, S, Musumarra, A, Nolte, R, Palomo-Pinto, F R, Paradela, C, Patronis, N, Pavlik, A, Perkowski, J, Plompen, A, Porras, J I, Praena, J, Quesada, J M, Rauscher, T, Reifarth, R, Riego-Perez, A, Robles, M, Rubbia, C, Ryan, J A, Saxena, A, Schmidt, S, Schumann, D, Sedyshev, P, Smith, A G, Suryanarayana, S V, Tagliente, G, Tain, J L, Tarifeño-Saldivia, A, Tassan-Got, L, Valenta, S, Vannini, G, Variale, V, Vaz, P, Ventura, A, Vlachoudis, V, Wallner, A, Warren, S, Weigand, M, Weiss, C, Wright, T
Lenguaje:eng
Publicado: 2020
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevC.102.014616
http://cds.cern.ch/record/2725327
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author Stamatopoulos, A
Tsinganis, A
Colonna, N
Kokkoris, M
Vlastou, R
Diakaki, M
Žugec, P
Schillebeeckx, P
Gunsing, F
Sabaté-Gilarte, M
Barbagallo, M
Aberle, O
Andrzejewski, J
Audouin, L
Bécares, V
Bacak, M
Balibrea, J
Barros, S
Bečvář, F
Beinrucker, C
Belloni, F
Berthoumieux, E
Billowes, J
Bosnar, D
Brugger, M
Caamaño, M
Lo Meo, S
Calviño, F
Calviani, M
Cano-Ott, D
Cerutti, F
Chiaveri, E
Cortés, G
Cortés-Giraldo, M A
Cosentino, L
Damone, L A
Deo, K
Domingo-Pardo, C
Dressler, R
Dupont, E
Durán, I
Fernández-Domínguez, B
Ferrari, A
Ferreira, P
Finocchiaro, P
Frost, R J W
Furman, V
Göbel, K
García, A R
Gheorghe, I
Glodariu, T
Gonçalves, I F
González-Romero, E
Goverdovski, A
Griesmayer, E
Guerrero, C
Harada, H
Heftrich, T
Heinitz, S
Hernández-Prieto, A
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
Krtička, M
Leal-Cidoncha, E
Lederer, C
Leeb, H
Lerendegui-Marco, J
Licata, M
Losito, R
Macina, D
Marganiec, J
Martínez, T
Massimi, C
Mastinu, P
Mastromarco, M
Matteucci, F
Mendoza, E
Mengoni, A
Milazzo, P M
Mingrone, F
Mirea, M
Montesano, S
Musumarra, A
Nolte, R
Palomo-Pinto, F R
Paradela, C
Patronis, N
Pavlik, A
Perkowski, J
Plompen, A
Porras, J I
Praena, J
Quesada, J M
Rauscher, T
Reifarth, R
Riego-Perez, A
Robles, M
Rubbia, C
Ryan, J A
Saxena, A
Schmidt, S
Schumann, D
Sedyshev, P
Smith, A G
Suryanarayana, S V
Tagliente, G
Tain, J L
Tarifeño-Saldivia, A
Tassan-Got, L
Valenta, S
Vannini, G
Variale, V
Vaz, P
Ventura, A
Vlachoudis, V
Wallner, A
Warren, S
Weigand, M
Weiss, C
Wright, T
author_facet Stamatopoulos, A
Tsinganis, A
Colonna, N
Kokkoris, M
Vlastou, R
Diakaki, M
Žugec, P
Schillebeeckx, P
Gunsing, F
Sabaté-Gilarte, M
Barbagallo, M
Aberle, O
Andrzejewski, J
Audouin, L
Bécares, V
Bacak, M
Balibrea, J
Barros, S
Bečvář, F
Beinrucker, C
Belloni, F
Berthoumieux, E
Billowes, J
Bosnar, D
Brugger, M
Caamaño, M
Lo Meo, S
Calviño, F
Calviani, M
Cano-Ott, D
Cerutti, F
Chiaveri, E
Cortés, G
Cortés-Giraldo, M A
Cosentino, L
Damone, L A
Deo, K
Domingo-Pardo, C
Dressler, R
Dupont, E
Durán, I
Fernández-Domínguez, B
Ferrari, A
Ferreira, P
Finocchiaro, P
Frost, R J W
Furman, V
Göbel, K
García, A R
Gheorghe, I
Glodariu, T
Gonçalves, I F
González-Romero, E
Goverdovski, A
Griesmayer, E
Guerrero, C
Harada, H
Heftrich, T
Heinitz, S
Hernández-Prieto, A
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
Krtička, M
Leal-Cidoncha, E
Lederer, C
Leeb, H
Lerendegui-Marco, J
Licata, M
Losito, R
Macina, D
Marganiec, J
Martínez, T
Massimi, C
Mastinu, P
Mastromarco, M
Matteucci, F
Mendoza, E
Mengoni, A
Milazzo, P M
Mingrone, F
Mirea, M
Montesano, S
Musumarra, A
Nolte, R
Palomo-Pinto, F R
Paradela, C
Patronis, N
Pavlik, A
Perkowski, J
Plompen, A
Porras, J I
Praena, J
Quesada, J M
Rauscher, T
Reifarth, R
Riego-Perez, A
Robles, M
Rubbia, C
Ryan, J A
Saxena, A
Schmidt, S
Schumann, D
Sedyshev, P
Smith, A G
Suryanarayana, S V
Tagliente, G
Tain, J L
Tarifeño-Saldivia, A
Tassan-Got, L
Valenta, S
Vannini, G
Variale, V
Vaz, P
Ventura, A
Vlachoudis, V
Wallner, A
Warren, S
Weigand, M
Weiss, C
Wright, T
author_sort Stamatopoulos, A
collection CERN
description Background: Nuclear waste management is considered amongst the major challenges in the field of nuclear energy. A possible means of addressing this issue is waste transmutation in advanced nuclear systems, whose operation requires a fast neutron spectrum. In this regard, the accurate knowledge of neutron-induced reaction cross sections of several (minor) actinide isotopes is essential for design optimization and improvement of safety margins of such systems. One such case is Pu240, due to its accumulation in spent nuclear fuel of thermal reactors and its usage in fast reactor fuel. The measurement of the Pu240(n,f) cross section was previously attempted at the CERN n_TOF facility EAR1 measuring station using the time-of-flight technique. Due to the low amount of available material and the given flux at EAR1, the measurement had to last several months to achieve a sufficient statistical accuracy. This long duration led to detector deterioration due to the prolonged exposure to the high α activity of the fission foils, therefore the measurement could not be successfully completed. Purpose: It is aimed to determine whether it is feasible to study neutron-induced fission at n_TOF/EAR2 and provide data on the Pu240(n,f) reaction in energy regions requested for applications. Methods: The study of the Pu240(n,f) reaction was made at a new experimental area (EAR2) with a shorter flight path which delivered on average 30 times higher flux at fast neutron energies. This enabled the measurement to be performed much faster, thus limiting the exposure of the detectors to the intrinsic activity of the fission foils. The experimental setup was based on microbulk Micromegas detectors and the time-of-flight data were analyzed with an optimized pulse-shape analysis algorithm. Special attention was dedicated to the estimation of the non-negligible counting loss corrections with the development of a new methodology, and other corrections were estimated via Monte Carlo simulations of the experimental setup. Results: This new measurement of the Pu240(n,f) cross section yielded data from 9meV up to 6MeV incident neutron energy and fission resonance kernels were extracted up to 10keV. Conclusions: Neutron-induced fission of high activity samples can be successfully studied at the n_TOF/EAR2 facility at CERN covering a wide range of neutron energies, from thermal to a few MeV.
id oai-inspirehep.net-1808814
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
record_format invenio
spelling oai-inspirehep.net-18088142020-07-29T21:30:50Zdoi:10.1103/PhysRevC.102.014616http://cds.cern.ch/record/2725327engStamatopoulos, ATsinganis, AColonna, NKokkoris, MVlastou, RDiakaki, MŽugec, PSchillebeeckx, PGunsing, FSabaté-Gilarte, MBarbagallo, MAberle, OAndrzejewski, JAudouin, LBécares, VBacak, MBalibrea, JBarros, SBečvář, FBeinrucker, CBelloni, FBerthoumieux, EBillowes, JBosnar, DBrugger, MCaamaño, MLo Meo, SCalviño, FCalviani, MCano-Ott, DCerutti, FChiaveri, ECortés, GCortés-Giraldo, M ACosentino, LDamone, L ADeo, KDomingo-Pardo, CDressler, RDupont, EDurán, IFernández-Domínguez, BFerrari, AFerreira, PFinocchiaro, PFrost, R J WFurman, VGöbel, KGarcía, A RGheorghe, IGlodariu, TGonçalves, I FGonzález-Romero, EGoverdovski, AGriesmayer, EGuerrero, CHarada, HHeftrich, THeinitz, SHernández-Prieto, AHeyse, JJenkins, D GJericha, EKäppeler, FKadi, YKatabuchi, TKavrigin, PKetlerov, VKhryachkov, VKimura, AKivel, NKnapova, IKrtička, MLeal-Cidoncha, ELederer, CLeeb, HLerendegui-Marco, JLicata, MLosito, RMacina, DMarganiec, JMartínez, TMassimi, CMastinu, PMastromarco, MMatteucci, FMendoza, EMengoni, AMilazzo, P MMingrone, FMirea, MMontesano, SMusumarra, ANolte, RPalomo-Pinto, F RParadela, CPatronis, NPavlik, APerkowski, JPlompen, APorras, J IPraena, JQuesada, J MRauscher, TReifarth, RRiego-Perez, ARobles, MRubbia, CRyan, J ASaxena, ASchmidt, SSchumann, DSedyshev, PSmith, A GSuryanarayana, S VTagliente, GTain, J LTarifeño-Saldivia, ATassan-Got, LValenta, SVannini, GVariale, VVaz, PVentura, AVlachoudis, VWallner, AWarren, SWeigand, MWeiss, CWright, TInvestigation of the $^{240}$Pu$(n,f)$ reaction at the n_TOF/EAR2 facility in the 9 meV–6 MeV rangeNuclear Physics - ExperimentBackground: Nuclear waste management is considered amongst the major challenges in the field of nuclear energy. A possible means of addressing this issue is waste transmutation in advanced nuclear systems, whose operation requires a fast neutron spectrum. In this regard, the accurate knowledge of neutron-induced reaction cross sections of several (minor) actinide isotopes is essential for design optimization and improvement of safety margins of such systems. One such case is Pu240, due to its accumulation in spent nuclear fuel of thermal reactors and its usage in fast reactor fuel. The measurement of the Pu240(n,f) cross section was previously attempted at the CERN n_TOF facility EAR1 measuring station using the time-of-flight technique. Due to the low amount of available material and the given flux at EAR1, the measurement had to last several months to achieve a sufficient statistical accuracy. This long duration led to detector deterioration due to the prolonged exposure to the high α activity of the fission foils, therefore the measurement could not be successfully completed. Purpose: It is aimed to determine whether it is feasible to study neutron-induced fission at n_TOF/EAR2 and provide data on the Pu240(n,f) reaction in energy regions requested for applications. Methods: The study of the Pu240(n,f) reaction was made at a new experimental area (EAR2) with a shorter flight path which delivered on average 30 times higher flux at fast neutron energies. This enabled the measurement to be performed much faster, thus limiting the exposure of the detectors to the intrinsic activity of the fission foils. The experimental setup was based on microbulk Micromegas detectors and the time-of-flight data were analyzed with an optimized pulse-shape analysis algorithm. Special attention was dedicated to the estimation of the non-negligible counting loss corrections with the development of a new methodology, and other corrections were estimated via Monte Carlo simulations of the experimental setup. Results: This new measurement of the Pu240(n,f) cross section yielded data from 9meV up to 6MeV incident neutron energy and fission resonance kernels were extracted up to 10keV. Conclusions: Neutron-induced fission of high activity samples can be successfully studied at the n_TOF/EAR2 facility at CERN covering a wide range of neutron energies, from thermal to a few MeV.oai:inspirehep.net:18088142020
spellingShingle Nuclear Physics - Experiment
Stamatopoulos, A
Tsinganis, A
Colonna, N
Kokkoris, M
Vlastou, R
Diakaki, M
Žugec, P
Schillebeeckx, P
Gunsing, F
Sabaté-Gilarte, M
Barbagallo, M
Aberle, O
Andrzejewski, J
Audouin, L
Bécares, V
Bacak, M
Balibrea, J
Barros, S
Bečvář, F
Beinrucker, C
Belloni, F
Berthoumieux, E
Billowes, J
Bosnar, D
Brugger, M
Caamaño, M
Lo Meo, S
Calviño, F
Calviani, M
Cano-Ott, D
Cerutti, F
Chiaveri, E
Cortés, G
Cortés-Giraldo, M A
Cosentino, L
Damone, L A
Deo, K
Domingo-Pardo, C
Dressler, R
Dupont, E
Durán, I
Fernández-Domínguez, B
Ferrari, A
Ferreira, P
Finocchiaro, P
Frost, R J W
Furman, V
Göbel, K
García, A R
Gheorghe, I
Glodariu, T
Gonçalves, I F
González-Romero, E
Goverdovski, A
Griesmayer, E
Guerrero, C
Harada, H
Heftrich, T
Heinitz, S
Hernández-Prieto, A
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
Krtička, M
Leal-Cidoncha, E
Lederer, C
Leeb, H
Lerendegui-Marco, J
Licata, M
Losito, R
Macina, D
Marganiec, J
Martínez, T
Massimi, C
Mastinu, P
Mastromarco, M
Matteucci, F
Mendoza, E
Mengoni, A
Milazzo, P M
Mingrone, F
Mirea, M
Montesano, S
Musumarra, A
Nolte, R
Palomo-Pinto, F R
Paradela, C
Patronis, N
Pavlik, A
Perkowski, J
Plompen, A
Porras, J I
Praena, J
Quesada, J M
Rauscher, T
Reifarth, R
Riego-Perez, A
Robles, M
Rubbia, C
Ryan, J A
Saxena, A
Schmidt, S
Schumann, D
Sedyshev, P
Smith, A G
Suryanarayana, S V
Tagliente, G
Tain, J L
Tarifeño-Saldivia, A
Tassan-Got, L
Valenta, S
Vannini, G
Variale, V
Vaz, P
Ventura, A
Vlachoudis, V
Wallner, A
Warren, S
Weigand, M
Weiss, C
Wright, T
Investigation of the $^{240}$Pu$(n,f)$ reaction at the n_TOF/EAR2 facility in the 9 meV–6 MeV range
title Investigation of the $^{240}$Pu$(n,f)$ reaction at the n_TOF/EAR2 facility in the 9 meV–6 MeV range
title_full Investigation of the $^{240}$Pu$(n,f)$ reaction at the n_TOF/EAR2 facility in the 9 meV–6 MeV range
title_fullStr Investigation of the $^{240}$Pu$(n,f)$ reaction at the n_TOF/EAR2 facility in the 9 meV–6 MeV range
title_full_unstemmed Investigation of the $^{240}$Pu$(n,f)$ reaction at the n_TOF/EAR2 facility in the 9 meV–6 MeV range
title_short Investigation of the $^{240}$Pu$(n,f)$ reaction at the n_TOF/EAR2 facility in the 9 meV–6 MeV range
title_sort investigation of the $^{240}$pu$(n,f)$ reaction at the n_tof/ear2 facility in the 9 mev–6 mev range
topic Nuclear Physics - Experiment
url https://dx.doi.org/10.1103/PhysRevC.102.014616
http://cds.cern.ch/record/2725327
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AT khryachkovv investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT kimuraa investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT kiveln investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT knapovai investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT krtickam investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT lealcidonchae investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT ledererc investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT leebh investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT lerendeguimarcoj investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT licatam investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT lositor investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT macinad investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT marganiecj investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT martinezt investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT massimic investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT mastinup investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT mastromarcom investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT matteuccif investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT mendozae investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT mengonia investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT milazzopm investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT mingronef investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT miream investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT montesanos investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT musumarraa investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT nolter investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT palomopintofr investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT paradelac investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT patronisn investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT pavlika investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT perkowskij investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT plompena investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT porrasji investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT praenaj investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT quesadajm investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT rauschert investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT reifarthr investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT riegopereza investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT roblesm investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT rubbiac investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT ryanja investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT saxenaa investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT schmidts investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT schumannd investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT sedyshevp investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT smithag investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT suryanarayanasv investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT taglienteg investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT tainjl investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT tarifenosaldiviaa investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT tassangotl investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT valentas investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT vanninig investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT varialev investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT vazp investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT venturaa investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT vlachoudisv investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT wallnera investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT warrens investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT weigandm investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT weissc investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange
AT wrightt investigationofthe240punfreactionatthentofear2facilityinthe9mev6mevrange