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Integral measurement of the $^{12}$C(n,p)$^{12}$B reaction up to 10 GeV

The integral measurement of the $^{12}$C(n,p)$^{12}$B reaction was performed at the neutron time of flight facility n_TOF at CERN. The total number of $^{12}$B nuclei produced per neutron pulse of the n_TOF beam was determined using the activation technique in combination with a time of flight techn...

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Autores principales: Žugec, P., Colonna, N., Bosnar, D., Ventura, A., Mengoni, A., Altstadt, S., Andrzejewski, J., Audouin, L., Barbagallo, M., Bécares, V., Bečvář, F., Belloni, F., Berthoumieux, E., Billowes, J., Boccone, V., Brugger, M., Calviani, M., Calviño, F., Cano-Ott, D., Carrapiço, C., Cerutti, F., Chiaveri, E., Chin, M., Cortés, G., Cortés-Giraldo, M.A., Cosentino, L., Diakaki, M., Domingo-Pardo, C., Dressler, R., Duran, I., Eleftheriadis, C., Ferrari, A., Finocchiaro, P., Fraval, K., Ganesan, S., García, A.R., Giubrone, G., Gómez-Hornillos, M.B., Gonçalves, I.F., González-Romero, E., Griesmayer, E., Guerrero, C., Gunsing, F., Gurusamy, P., Heinitz, S., Jenkins, D.G., Jericha, E., Käppeler, F., Karadimos, D., Kivel, N., Kokkoris, M., Krtička, M., Kroll, J., Langer, C., Lederer, C., Leeb, H., Leong, L.S., Lo Meo, S., Losito, R., Manousos, A., Marganiec, J., Martínez, T., Massimi, C., Mastinu, P., Mastromarco, M., Mendoza, E., Milazzo, P.M., Mingrone, F., Mirea, M., Mondalaers, W., Musumarra, A., Paradela, C., Pavlik, A., Perkowski, J., Plompen, A., Praena, J., Quesada, J., Rauscher, T., Reifarth, R., Riego, A., Roman, F., Rubbia, C., Sarmento, R., Saxena, A., Schillebeeckx, P., Schmidt, S., Schumann, D., Tagliente, G., Tain, J.L., Tarrío, D., Tassan-Got, L., Tsinganis, A., Valenta, S., Vannini, G., Variale, V., Vaz, P., Versaci, R., Vermeulen, M.J., Vlachoudis, V., Vlastou, R., Wallner, A., Ware, T., Weigand, M., Weiß, C., Wright, T.
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:https://dx.doi.org/10.1140/epja/i2016-16101-7
http://cds.cern.ch/record/2147750
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author Žugec, P.
Colonna, N.
Bosnar, D.
Ventura, A.
Mengoni, A.
Altstadt, S.
Andrzejewski, J.
Audouin, L.
Barbagallo, M.
Bécares, V.
Bečvář, F.
Belloni, F.
Berthoumieux, E.
Billowes, J.
Boccone, V.
Brugger, M.
Calviani, M.
Calviño, F.
Cano-Ott, D.
Carrapiço, C.
Cerutti, F.
Chiaveri, E.
Chin, M.
Cortés, G.
Cortés-Giraldo, M.A.
Cosentino, L.
Diakaki, M.
Domingo-Pardo, C.
Dressler, R.
Duran, I.
Eleftheriadis, C.
Ferrari, A.
Finocchiaro, P.
Fraval, K.
Ganesan, S.
García, A.R.
Giubrone, G.
Gómez-Hornillos, M.B.
Gonçalves, I.F.
González-Romero, E.
Griesmayer, E.
Guerrero, C.
Gunsing, F.
Gurusamy, P.
Heinitz, S.
Jenkins, D.G.
Jericha, E.
Käppeler, F.
Karadimos, D.
Kivel, N.
Kokkoris, M.
Krtička, M.
Kroll, J.
Langer, C.
Lederer, C.
Leeb, H.
Leong, L.S.
Lo Meo, S.
Losito, R.
Manousos, A.
Marganiec, J.
Martínez, T.
Massimi, C.
Mastinu, P.
Mastromarco, M.
Mendoza, E.
Milazzo, P.M.
Mingrone, F.
Mirea, M.
Mondalaers, W.
Musumarra, A.
Paradela, C.
Pavlik, A.
Perkowski, J.
Plompen, A.
Praena, J.
Quesada, J.
Rauscher, T.
Reifarth, R.
Riego, A.
Roman, F.
Rubbia, C.
Sarmento, R.
Saxena, A.
Schillebeeckx, P.
Schmidt, S.
Schumann, D.
Tagliente, G.
Tain, J.L.
Tarrío, D.
Tassan-Got, L.
Tsinganis, A.
Valenta, S.
Vannini, G.
Variale, V.
Vaz, P.
Versaci, R.
Vermeulen, M.J.
Vlachoudis, V.
Vlastou, R.
Wallner, A.
Ware, T.
Weigand, M.
Weiß, C.
Wright, T.
author_facet Žugec, P.
Colonna, N.
Bosnar, D.
Ventura, A.
Mengoni, A.
Altstadt, S.
Andrzejewski, J.
Audouin, L.
Barbagallo, M.
Bécares, V.
Bečvář, F.
Belloni, F.
Berthoumieux, E.
Billowes, J.
Boccone, V.
Brugger, M.
Calviani, M.
Calviño, F.
Cano-Ott, D.
Carrapiço, C.
Cerutti, F.
Chiaveri, E.
Chin, M.
Cortés, G.
Cortés-Giraldo, M.A.
Cosentino, L.
Diakaki, M.
Domingo-Pardo, C.
Dressler, R.
Duran, I.
Eleftheriadis, C.
Ferrari, A.
Finocchiaro, P.
Fraval, K.
Ganesan, S.
García, A.R.
Giubrone, G.
Gómez-Hornillos, M.B.
Gonçalves, I.F.
González-Romero, E.
Griesmayer, E.
Guerrero, C.
Gunsing, F.
Gurusamy, P.
Heinitz, S.
Jenkins, D.G.
Jericha, E.
Käppeler, F.
Karadimos, D.
Kivel, N.
Kokkoris, M.
Krtička, M.
Kroll, J.
Langer, C.
Lederer, C.
Leeb, H.
Leong, L.S.
Lo Meo, S.
Losito, R.
Manousos, A.
Marganiec, J.
Martínez, T.
Massimi, C.
Mastinu, P.
Mastromarco, M.
Mendoza, E.
Milazzo, P.M.
Mingrone, F.
Mirea, M.
Mondalaers, W.
Musumarra, A.
Paradela, C.
Pavlik, A.
Perkowski, J.
Plompen, A.
Praena, J.
Quesada, J.
Rauscher, T.
Reifarth, R.
Riego, A.
Roman, F.
Rubbia, C.
Sarmento, R.
Saxena, A.
Schillebeeckx, P.
Schmidt, S.
Schumann, D.
Tagliente, G.
Tain, J.L.
Tarrío, D.
Tassan-Got, L.
Tsinganis, A.
Valenta, S.
Vannini, G.
Variale, V.
Vaz, P.
Versaci, R.
Vermeulen, M.J.
Vlachoudis, V.
Vlastou, R.
Wallner, A.
Ware, T.
Weigand, M.
Weiß, C.
Wright, T.
author_sort Žugec, P.
collection CERN
description The integral measurement of the $^{12}$C(n,p)$^{12}$B reaction was performed at the neutron time of flight facility n_TOF at CERN. The total number of $^{12}$B nuclei produced per neutron pulse of the n_TOF beam was determined using the activation technique in combination with a time of flight technique. The cross section is integrated over the n_TOF neutron energy spectrum from reaction threshold at 13.6 MeV to 10 GeV. Having been measured up to 1 GeV on basis of the $^{235}$U(n,f) reaction, the neutron energy spectrum above 200 MeV has been reevaluated due to the recent extension of the cross section reference for this particular reaction, which is otherwise considered a standard up to 200 MeV. The results from the dedicated GEANT4 simulations have been used to evaluate the neutron flux from 1 GeV up to 10 GeV. The experimental results related to the $^{12}$C(n,p)$^{12}$B reaction are compared with the evaluated cross sections from major libraries and with the predictions of different GEANT4 models, which mostly underestimate the $^{12}$B production. On the contrary, a good reproduction of the integral cross section derived from measurements is obtained with TALYS-1.6 calculations, with optimized parameters.
id cern-2147750
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2016
record_format invenio
spelling cern-21477502023-03-14T17:39:21Zdoi:10.1140/epja/i2016-16101-7http://cds.cern.ch/record/2147750engŽugec, P.Colonna, N.Bosnar, D.Ventura, A.Mengoni, A.Altstadt, S.Andrzejewski, J.Audouin, L.Barbagallo, M.Bécares, V.Bečvář, F.Belloni, F.Berthoumieux, E.Billowes, J.Boccone, V.Brugger, M.Calviani, M.Calviño, F.Cano-Ott, D.Carrapiço, C.Cerutti, F.Chiaveri, E.Chin, M.Cortés, G.Cortés-Giraldo, M.A.Cosentino, L.Diakaki, M.Domingo-Pardo, C.Dressler, R.Duran, I.Eleftheriadis, C.Ferrari, A.Finocchiaro, P.Fraval, K.Ganesan, S.García, A.R.Giubrone, G.Gómez-Hornillos, M.B.Gonçalves, I.F.González-Romero, E.Griesmayer, E.Guerrero, C.Gunsing, F.Gurusamy, P.Heinitz, S.Jenkins, D.G.Jericha, E.Käppeler, F.Karadimos, D.Kivel, N.Kokkoris, M.Krtička, M.Kroll, J.Langer, C.Lederer, C.Leeb, H.Leong, L.S.Lo Meo, S.Losito, R.Manousos, A.Marganiec, J.Martínez, T.Massimi, C.Mastinu, P.Mastromarco, M.Mendoza, E.Milazzo, P.M.Mingrone, F.Mirea, M.Mondalaers, W.Musumarra, A.Paradela, C.Pavlik, A.Perkowski, J.Plompen, A.Praena, J.Quesada, J.Rauscher, T.Reifarth, R.Riego, A.Roman, F.Rubbia, C.Sarmento, R.Saxena, A.Schillebeeckx, P.Schmidt, S.Schumann, D.Tagliente, G.Tain, J.L.Tarrío, D.Tassan-Got, L.Tsinganis, A.Valenta, S.Vannini, G.Variale, V.Vaz, P.Versaci, R.Vermeulen, M.J.Vlachoudis, V.Vlastou, R.Wallner, A.Ware, T.Weigand, M.Weiß, C.Wright, T.Integral measurement of the $^{12}$C(n,p)$^{12}$B reaction up to 10 GeVNuclear Physics - ExperimentThe integral measurement of the $^{12}$C(n,p)$^{12}$B reaction was performed at the neutron time of flight facility n_TOF at CERN. The total number of $^{12}$B nuclei produced per neutron pulse of the n_TOF beam was determined using the activation technique in combination with a time of flight technique. The cross section is integrated over the n_TOF neutron energy spectrum from reaction threshold at 13.6 MeV to 10 GeV. Having been measured up to 1 GeV on basis of the $^{235}$U(n,f) reaction, the neutron energy spectrum above 200 MeV has been reevaluated due to the recent extension of the cross section reference for this particular reaction, which is otherwise considered a standard up to 200 MeV. The results from the dedicated GEANT4 simulations have been used to evaluate the neutron flux from 1 GeV up to 10 GeV. The experimental results related to the $^{12}$C(n,p)$^{12}$B reaction are compared with the evaluated cross sections from major libraries and with the predictions of different GEANT4 models, which mostly underestimate the $^{12}$B production. On the contrary, a good reproduction of the integral cross section derived from measurements is obtained with TALYS-1.6 calculations, with optimized parameters.The integral measurement of the$^{12}$C(n, p)$^{12}$B reaction was performed at the neutron time-of-flight facility n_TOF at CERN. The total number of$^{12}$B nuclei produced per neutron pulse of the n_TOF beam was determined using the activation technique in combination with a time-of-flight technique. The cross section is integrated over the n_TOF neutron energy spectrum from reaction threshold at 13.6MeV to 10GeV. Having been measured up to 1GeV on basis of the$^{235}$U(n, f ) reaction, the neutron energy spectrum above 200MeV has been re-evaluated due to the recent extension of the cross section reference for this particular reaction, which is otherwise considered a standard up to 200MeV. The results from the dedicated GEANT4 simulations have been used to evaluate the neutron flux from 1GeV up to 10GeV. The experimental results related to the$^{12}$C(n, p)$^{12}$B reaction are compared with the evaluated cross sections from major libraries and with the predictions of different GEANT4 models, which mostly underestimate the$^{12}$B production. On the contrary, a good reproduction of the integral cross section derived from measurements is obtained with TALYS-1.6 calculations, with optimized parameters.The integral measurement of the $^{12}$C(n,p)$^{12}$B reaction was performed at the neutron time of flight facility n_TOF at CERN. The total number of $^{12}$B nuclei produced per neutron pulse of the n_TOF beam was determined using the activation technique in combination with a time of flight technique. The cross section is integrated over the n_TOF neutron energy spectrum from reaction threshold at 13.6 MeV to 10 GeV. Having been measured up to 1 GeV on basis of the $^{235}$U(n,f) reaction, the neutron energy spectrum above 200 MeV has been reevaluated due to the recent extension of the cross section reference for this particular reaction, which is otherwise considered a standard up to 200 MeV. The results from the dedicated GEANT4 simulations have been used to evaluate the neutron flux from 1 GeV up to 10 GeV. The experimental results related to the $^{12}$C(n,p)$^{12}$B reaction are compared with the evaluated cross sections from major libraries and with the predictions of different GEANT4 models, which mostly underestimate the $^{12}$B production. On the contrary, a good reproduction of the integral cross section derived from measurements is obtained with TALYS-1.6 calculations, with optimized parameters.arXiv:1604.05749oai:cds.cern.ch:21477502016-04-19
spellingShingle Nuclear Physics - Experiment
Žugec, P.
Colonna, N.
Bosnar, D.
Ventura, A.
Mengoni, A.
Altstadt, S.
Andrzejewski, J.
Audouin, L.
Barbagallo, M.
Bécares, V.
Bečvář, F.
Belloni, F.
Berthoumieux, E.
Billowes, J.
Boccone, V.
Brugger, M.
Calviani, M.
Calviño, F.
Cano-Ott, D.
Carrapiço, C.
Cerutti, F.
Chiaveri, E.
Chin, M.
Cortés, G.
Cortés-Giraldo, M.A.
Cosentino, L.
Diakaki, M.
Domingo-Pardo, C.
Dressler, R.
Duran, I.
Eleftheriadis, C.
Ferrari, A.
Finocchiaro, P.
Fraval, K.
Ganesan, S.
García, A.R.
Giubrone, G.
Gómez-Hornillos, M.B.
Gonçalves, I.F.
González-Romero, E.
Griesmayer, E.
Guerrero, C.
Gunsing, F.
Gurusamy, P.
Heinitz, S.
Jenkins, D.G.
Jericha, E.
Käppeler, F.
Karadimos, D.
Kivel, N.
Kokkoris, M.
Krtička, M.
Kroll, J.
Langer, C.
Lederer, C.
Leeb, H.
Leong, L.S.
Lo Meo, S.
Losito, R.
Manousos, A.
Marganiec, J.
Martínez, T.
Massimi, C.
Mastinu, P.
Mastromarco, M.
Mendoza, E.
Milazzo, P.M.
Mingrone, F.
Mirea, M.
Mondalaers, W.
Musumarra, A.
Paradela, C.
Pavlik, A.
Perkowski, J.
Plompen, A.
Praena, J.
Quesada, J.
Rauscher, T.
Reifarth, R.
Riego, A.
Roman, F.
Rubbia, C.
Sarmento, R.
Saxena, A.
Schillebeeckx, P.
Schmidt, S.
Schumann, D.
Tagliente, G.
Tain, J.L.
Tarrío, D.
Tassan-Got, L.
Tsinganis, A.
Valenta, S.
Vannini, G.
Variale, V.
Vaz, P.
Versaci, R.
Vermeulen, M.J.
Vlachoudis, V.
Vlastou, R.
Wallner, A.
Ware, T.
Weigand, M.
Weiß, C.
Wright, T.
Integral measurement of the $^{12}$C(n,p)$^{12}$B reaction up to 10 GeV
title Integral measurement of the $^{12}$C(n,p)$^{12}$B reaction up to 10 GeV
title_full Integral measurement of the $^{12}$C(n,p)$^{12}$B reaction up to 10 GeV
title_fullStr Integral measurement of the $^{12}$C(n,p)$^{12}$B reaction up to 10 GeV
title_full_unstemmed Integral measurement of the $^{12}$C(n,p)$^{12}$B reaction up to 10 GeV
title_short Integral measurement of the $^{12}$C(n,p)$^{12}$B reaction up to 10 GeV
title_sort integral measurement of the $^{12}$c(n,p)$^{12}$b reaction up to 10 gev
topic Nuclear Physics - Experiment
url https://dx.doi.org/10.1140/epja/i2016-16101-7
http://cds.cern.ch/record/2147750
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