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Measurement and analysis of $^{155,157}$Gd(n,$\gamma$) from thermal energy to 1 keV

We have measured the capture cross section of the $^{155}$Gd and $^{157}$Gd isotopes between 0.025 eV and 1 keV. The capture events were recorded by an array of 4 C$_{6}$D$_{6}$ detectors, and the capture yield was deduced exploiting the total energy detection system in combination with the Pulse He...

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Autores principales: Massimi, C, Aberle, O, Andrzejewski, J, Audouin, L, Bacak, M, Balibrea, J, Barbagallo, M, Becvár, F, Berthoumieux, E, Billowes, J, Bosnar, D, Brown, A, Caamaño, M, Calviño, F, Calviani, M, Cano-Ott, D, Cardella, R, Casanovas, A, Castelluccio, D M, Cerutti, F, Chen, Y H, Chiaveri, E, Clai, G, Colonna, N, Console Camprini, P, Cortés, G, Cortés-Giraldo, M A, Cosentino, L, Damone, L A, Diakaki, M, DomingoPardo, 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, Gilardoni, S, Glodariu, T, Gonçalves, I F, González-Romero, E, Griesmayer, E, Guerrero, C, Guglielmelli, A, 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, Knapova, I, Kokkoris, M, Krticka, M, Kurtulgil, D, Leal-Cidoncha, E, Lederer, C, Leeb, H, Lerendegui-Marco, J, Lonsdale, S J, Macina, D, Manna, A, Marganiec, J, Martínez, T, Masi, A, Mastinu, P, Mastromarco, M, Maugeri, E A, Mazzone, A, Mendoza, E, Mengoni, A, Milazzo, P M, Mingrone, F, Mucciola, R, 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, Rocchi, F, Rubbia, C, Ryan, J A, Sabaté-Gilarte, M, Saxena, A, Schillebeeckx, P, Schumann, D, Sedyshev, P, Smith, A G, Sosnin, N V, Stamatopoulos, A, Tagliente, G, Tain, J L, Tarifeño-Saldivia, A, Tassan-Got, L, Valenta, S, Vannini, G, Variale, V, Vaz, P, Ventura, A, Vlachoudis, V, Vlastou, R, Wallner, A, Warren, S, Weiss, C, Woods, P J, Wright, T, Žugec, P
Lenguaje:eng
Publicado: 2020
Materias:
Acceso en línea:https://dx.doi.org/10.1051/epjconf/202023901041
http://cds.cern.ch/record/2773402
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author Massimi, C
Aberle, O
Andrzejewski, J
Audouin, L
Bacak, M
Balibrea, J
Barbagallo, M
Becvár, F
Berthoumieux, E
Billowes, J
Bosnar, D
Brown, A
Caamaño, M
Calviño, F
Calviani, M
Cano-Ott, D
Cardella, R
Casanovas, A
Castelluccio, D M
Cerutti, F
Chen, Y H
Chiaveri, E
Clai, G
Colonna, N
Console Camprini, P
Cortés, G
Cortés-Giraldo, M A
Cosentino, L
Damone, L A
Diakaki, M
DomingoPardo, 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
Gilardoni, S
Glodariu, T
Gonçalves, I F
González-Romero, E
Griesmayer, E
Guerrero, C
Guglielmelli, A
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
Knapova, I
Kokkoris, M
Krticka, M
Kurtulgil, D
Leal-Cidoncha, E
Lederer, C
Leeb, H
Lerendegui-Marco, J
Lonsdale, S J
Macina, D
Manna, A
Marganiec, J
Martínez, T
Masi, A
Mastinu, P
Mastromarco, M
Maugeri, E A
Mazzone, A
Mendoza, E
Mengoni, A
Milazzo, P M
Mingrone, F
Mucciola, R
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
Rocchi, F
Rubbia, C
Ryan, J A
Sabaté-Gilarte, M
Saxena, A
Schillebeeckx, P
Schumann, D
Sedyshev, P
Smith, A G
Sosnin, N V
Stamatopoulos, A
Tagliente, G
Tain, J L
Tarifeño-Saldivia, A
Tassan-Got, L
Valenta, S
Vannini, G
Variale, V
Vaz, P
Ventura, A
Vlachoudis, V
Vlastou, R
Wallner, A
Warren, S
Weiss, C
Woods, P J
Wright, T
Žugec, P
author_facet Massimi, C
Aberle, O
Andrzejewski, J
Audouin, L
Bacak, M
Balibrea, J
Barbagallo, M
Becvár, F
Berthoumieux, E
Billowes, J
Bosnar, D
Brown, A
Caamaño, M
Calviño, F
Calviani, M
Cano-Ott, D
Cardella, R
Casanovas, A
Castelluccio, D M
Cerutti, F
Chen, Y H
Chiaveri, E
Clai, G
Colonna, N
Console Camprini, P
Cortés, G
Cortés-Giraldo, M A
Cosentino, L
Damone, L A
Diakaki, M
DomingoPardo, 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
Gilardoni, S
Glodariu, T
Gonçalves, I F
González-Romero, E
Griesmayer, E
Guerrero, C
Guglielmelli, A
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
Knapova, I
Kokkoris, M
Krticka, M
Kurtulgil, D
Leal-Cidoncha, E
Lederer, C
Leeb, H
Lerendegui-Marco, J
Lonsdale, S J
Macina, D
Manna, A
Marganiec, J
Martínez, T
Masi, A
Mastinu, P
Mastromarco, M
Maugeri, E A
Mazzone, A
Mendoza, E
Mengoni, A
Milazzo, P M
Mingrone, F
Mucciola, R
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
Rocchi, F
Rubbia, C
Ryan, J A
Sabaté-Gilarte, M
Saxena, A
Schillebeeckx, P
Schumann, D
Sedyshev, P
Smith, A G
Sosnin, N V
Stamatopoulos, A
Tagliente, G
Tain, J L
Tarifeño-Saldivia, A
Tassan-Got, L
Valenta, S
Vannini, G
Variale, V
Vaz, P
Ventura, A
Vlachoudis, V
Vlastou, R
Wallner, A
Warren, S
Weiss, C
Woods, P J
Wright, T
Žugec, P
author_sort Massimi, C
collection CERN
description We have measured the capture cross section of the $^{155}$Gd and $^{157}$Gd isotopes between 0.025 eV and 1 keV. The capture events were recorded by an array of 4 C$_{6}$D$_{6}$ detectors, and the capture yield was deduced exploiting the total energy detection system in combination with the Pulse Height Weighting Techniques. Because of the large cross section around thermal neutron energy, 4 metallic samples of different thickness were used to prevent problems related to self-shielding. The samples were isotopically enriched, with a cross contamination of the other isotope of less than 1.14%. The capture yield was analyzed with an R-Matrix code to describe the cross section in terms of resonance parameters. Near thermal energies, the results are significantly different from evaluations and from previous time-of-flight experiments. The data from the present measurement at n_TOF are publicly available in the experimental nuclear reaction database EXFOR.
id oai-inspirehep.net-1861468
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
record_format invenio
spelling oai-inspirehep.net-18614682021-06-19T19:46:48Zdoi:10.1051/epjconf/202023901041http://cds.cern.ch/record/2773402engMassimi, CAberle, OAndrzejewski, JAudouin, LBacak, MBalibrea, JBarbagallo, MBecvár, FBerthoumieux, EBillowes, JBosnar, DBrown, ACaamaño, MCalviño, FCalviani, MCano-Ott, DCardella, RCasanovas, ACastelluccio, D MCerutti, FChen, Y HChiaveri, EClai, GColonna, NConsole Camprini, PCortés, GCortés-Giraldo, M ACosentino, LDamone, L ADiakaki, MDomingoPardo, CDressler, RDupont, EDurán, IFernández-Domínguez, BFerrari, AFerreira, PFinocchiaro, PFurman, VGöbel, KGarcía, A RGawlik, AGilardoni, SGlodariu, TGonçalves, I FGonzález-Romero, EGriesmayer, EGuerrero, CGuglielmelli, AGunsing, FHarada, HHeinitz, SHeyse, JJenkins, D GJericha, EKäppeler, FKadi, YKalamara, AKavrigin, PKimura, AKivel, NKnapova, IKokkoris, MKrticka, MKurtulgil, DLeal-Cidoncha, ELederer, CLeeb, HLerendegui-Marco, JLonsdale, S JMacina, DManna, AMarganiec, JMartínez, TMasi, AMastinu, PMastromarco, MMaugeri, E AMazzone, AMendoza, EMengoni, AMilazzo, P MMingrone, FMucciola, RMusumarra, ANegret, ANolte, ROprea, APatronis, NPavlik, APerkowski, JPorras, IPraena, JQuesada, J MRadeck, DRauscher, TReifarth, RRocchi, FRubbia, CRyan, J ASabaté-Gilarte, MSaxena, ASchillebeeckx, PSchumann, DSedyshev, PSmith, A GSosnin, N VStamatopoulos, ATagliente, GTain, J LTarifeño-Saldivia, ATassan-Got, LValenta, SVannini, GVariale, VVaz, PVentura, AVlachoudis, VVlastou, RWallner, AWarren, SWeiss, CWoods, P JWright, TŽugec, PMeasurement and analysis of $^{155,157}$Gd(n,$\gamma$) from thermal energy to 1 keVNuclear Physics - ExperimentWe have measured the capture cross section of the $^{155}$Gd and $^{157}$Gd isotopes between 0.025 eV and 1 keV. The capture events were recorded by an array of 4 C$_{6}$D$_{6}$ detectors, and the capture yield was deduced exploiting the total energy detection system in combination with the Pulse Height Weighting Techniques. Because of the large cross section around thermal neutron energy, 4 metallic samples of different thickness were used to prevent problems related to self-shielding. The samples were isotopically enriched, with a cross contamination of the other isotope of less than 1.14%. The capture yield was analyzed with an R-Matrix code to describe the cross section in terms of resonance parameters. Near thermal energies, the results are significantly different from evaluations and from previous time-of-flight experiments. The data from the present measurement at n_TOF are publicly available in the experimental nuclear reaction database EXFOR.oai:inspirehep.net:18614682020
spellingShingle Nuclear Physics - Experiment
Massimi, C
Aberle, O
Andrzejewski, J
Audouin, L
Bacak, M
Balibrea, J
Barbagallo, M
Becvár, F
Berthoumieux, E
Billowes, J
Bosnar, D
Brown, A
Caamaño, M
Calviño, F
Calviani, M
Cano-Ott, D
Cardella, R
Casanovas, A
Castelluccio, D M
Cerutti, F
Chen, Y H
Chiaveri, E
Clai, G
Colonna, N
Console Camprini, P
Cortés, G
Cortés-Giraldo, M A
Cosentino, L
Damone, L A
Diakaki, M
DomingoPardo, 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
Gilardoni, S
Glodariu, T
Gonçalves, I F
González-Romero, E
Griesmayer, E
Guerrero, C
Guglielmelli, A
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
Knapova, I
Kokkoris, M
Krticka, M
Kurtulgil, D
Leal-Cidoncha, E
Lederer, C
Leeb, H
Lerendegui-Marco, J
Lonsdale, S J
Macina, D
Manna, A
Marganiec, J
Martínez, T
Masi, A
Mastinu, P
Mastromarco, M
Maugeri, E A
Mazzone, A
Mendoza, E
Mengoni, A
Milazzo, P M
Mingrone, F
Mucciola, R
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
Rocchi, F
Rubbia, C
Ryan, J A
Sabaté-Gilarte, M
Saxena, A
Schillebeeckx, P
Schumann, D
Sedyshev, P
Smith, A G
Sosnin, N V
Stamatopoulos, A
Tagliente, G
Tain, J L
Tarifeño-Saldivia, A
Tassan-Got, L
Valenta, S
Vannini, G
Variale, V
Vaz, P
Ventura, A
Vlachoudis, V
Vlastou, R
Wallner, A
Warren, S
Weiss, C
Woods, P J
Wright, T
Žugec, P
Measurement and analysis of $^{155,157}$Gd(n,$\gamma$) from thermal energy to 1 keV
title Measurement and analysis of $^{155,157}$Gd(n,$\gamma$) from thermal energy to 1 keV
title_full Measurement and analysis of $^{155,157}$Gd(n,$\gamma$) from thermal energy to 1 keV
title_fullStr Measurement and analysis of $^{155,157}$Gd(n,$\gamma$) from thermal energy to 1 keV
title_full_unstemmed Measurement and analysis of $^{155,157}$Gd(n,$\gamma$) from thermal energy to 1 keV
title_short Measurement and analysis of $^{155,157}$Gd(n,$\gamma$) from thermal energy to 1 keV
title_sort measurement and analysis of $^{155,157}$gd(n,$\gamma$) from thermal energy to 1 kev
topic Nuclear Physics - Experiment
url https://dx.doi.org/10.1051/epjconf/202023901041
http://cds.cern.ch/record/2773402
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