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GEANT4 simulation of the neutron background of the C$_6$D$_6$ set-up for capture studies at n_TOF

The neutron sensitivity of the C$_6$D$_6$ detector setup used at n_TOF for capture measurements has been studied by means of detailed GEANT4 simulations. A realistic software replica of the entire n_TOF experimental hall, including the neutron beam line, sample, detector supports and the walls of th...

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Autores principales: Žugec, P., Colonna, N., Bosnar, D., 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., Diakaki, M., Domingo-Pardo, C., Dressler, R., Duran, I., Dzysiuk, N., Eleftheriadis, C., Ferrari, A., 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., Kadi, Y., Käppeler, F., Karadimos, D., Kivel, N., Koehler, P., Kokkoris, M., Krtička, M., Kroll, J., Langer, C., Lederer, C., Leeb, H., Leong, L.S., Lo Meo, S., Losito, R., Manousos, A., Marganiec, J., Martìnez, T., Massimi, C., Mastinu, P.F., Mastromarco, M., Meaze, M., Mendoza, E., Mengoni, A., Milazzo, P.M., Mingrone, F., Mirea, M., Mondalaers, W., Paradela, C., Pavlik, A., Perkowski, J., Plompen, A., Praena, J., Quesada, J.M., 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., Ventura, A., Versaci, R., Vermeulen, M.J., Vlachoudis, V., Vlastou, R., Wallner, A., Ware, T., Weigand, M., Weiß, C., Wright, T.
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.nima.2014.05.048
http://cds.cern.ch/record/1712074
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author Žugec, P.
Colonna, N.
Bosnar, D.
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.
Diakaki, M.
Domingo-Pardo, C.
Dressler, R.
Duran, I.
Dzysiuk, N.
Eleftheriadis, C.
Ferrari, A.
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.
Kadi, Y.
Käppeler, F.
Karadimos, D.
Kivel, N.
Koehler, P.
Kokkoris, M.
Krtička, M.
Kroll, J.
Langer, C.
Lederer, C.
Leeb, H.
Leong, L.S.
Lo Meo, S.
Losito, R.
Manousos, A.
Marganiec, J.
Martìnez, T.
Massimi, C.
Mastinu, P.F.
Mastromarco, M.
Meaze, M.
Mendoza, E.
Mengoni, A.
Milazzo, P.M.
Mingrone, F.
Mirea, M.
Mondalaers, W.
Paradela, C.
Pavlik, A.
Perkowski, J.
Plompen, A.
Praena, J.
Quesada, J.M.
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.
Ventura, A.
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.
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.
Diakaki, M.
Domingo-Pardo, C.
Dressler, R.
Duran, I.
Dzysiuk, N.
Eleftheriadis, C.
Ferrari, A.
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.
Kadi, Y.
Käppeler, F.
Karadimos, D.
Kivel, N.
Koehler, P.
Kokkoris, M.
Krtička, M.
Kroll, J.
Langer, C.
Lederer, C.
Leeb, H.
Leong, L.S.
Lo Meo, S.
Losito, R.
Manousos, A.
Marganiec, J.
Martìnez, T.
Massimi, C.
Mastinu, P.F.
Mastromarco, M.
Meaze, M.
Mendoza, E.
Mengoni, A.
Milazzo, P.M.
Mingrone, F.
Mirea, M.
Mondalaers, W.
Paradela, C.
Pavlik, A.
Perkowski, J.
Plompen, A.
Praena, J.
Quesada, J.M.
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.
Ventura, A.
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 neutron sensitivity of the C$_6$D$_6$ detector setup used at n_TOF for capture measurements has been studied by means of detailed GEANT4 simulations. A realistic software replica of the entire n_TOF experimental hall, including the neutron beam line, sample, detector supports and the walls of the experimental area has been implemented in the simulations. The simulations have been analyzed in the same manner as experimental data, in particular by applying the Pulse Height Weighting Technique. The simulations have been validated against a measurement of the neutron background performed with a $^\mathrm{nat}$C sample, showing an excellent agreement above 1 keV. At lower energies, an additional component in the measured $^\mathrm{nat}$C yield has been discovered, which prevents the use of $^\mathrm{nat}$C data for neutron background estimates at neutron energies below a few hundred eV. The origin and time structure of the neutron background have been derived from the simulations. Examples of the neutron background for two different samples are demonstrating the important role of accurate simulations of the neutron background in capture cross section measurements.
id cern-1712074
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2014
record_format invenio
spelling cern-17120742022-08-10T20:20:19Zdoi:10.1016/j.nima.2014.05.048http://cds.cern.ch/record/1712074engŽugec, P.Colonna, N.Bosnar, D.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.Diakaki, M.Domingo-Pardo, C.Dressler, R.Duran, I.Dzysiuk, N.Eleftheriadis, C.Ferrari, A.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.Kadi, Y.Käppeler, F.Karadimos, D.Kivel, N.Koehler, P.Kokkoris, M.Krtička, M.Kroll, J.Langer, C.Lederer, C.Leeb, H.Leong, L.S.Lo Meo, S.Losito, R.Manousos, A.Marganiec, J.Martìnez, T.Massimi, C.Mastinu, P.F.Mastromarco, M.Meaze, M.Mendoza, E.Mengoni, A.Milazzo, P.M.Mingrone, F.Mirea, M.Mondalaers, W.Paradela, C.Pavlik, A.Perkowski, J.Plompen, A.Praena, J.Quesada, J.M.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.Ventura, A.Versaci, R.Vermeulen, M.J.Vlachoudis, V.Vlastou, R.Wallner, A.Ware, T.Weigand, M.Weiß, C.Wright, T.GEANT4 simulation of the neutron background of the C$_6$D$_6$ set-up for capture studies at n_TOFphysics.ins-detThe neutron sensitivity of the C$_6$D$_6$ detector setup used at n_TOF for capture measurements has been studied by means of detailed GEANT4 simulations. A realistic software replica of the entire n_TOF experimental hall, including the neutron beam line, sample, detector supports and the walls of the experimental area has been implemented in the simulations. The simulations have been analyzed in the same manner as experimental data, in particular by applying the Pulse Height Weighting Technique. The simulations have been validated against a measurement of the neutron background performed with a $^\mathrm{nat}$C sample, showing an excellent agreement above 1 keV. At lower energies, an additional component in the measured $^\mathrm{nat}$C yield has been discovered, which prevents the use of $^\mathrm{nat}$C data for neutron background estimates at neutron energies below a few hundred eV. The origin and time structure of the neutron background have been derived from the simulations. Examples of the neutron background for two different samples are demonstrating the important role of accurate simulations of the neutron background in capture cross section measurements.The neutron sensitivity of the C_6D_6 detector setup used at n_TOF facility for capture measurements has been studied by means of detailed GEANT4 simulations. A realistic software replica of the entire n_TOF experimental hall, including the neutron beam line, sample, detector supports and the walls of the experimental area has been implemented in the simulations. The simulations have been analyzed in the same manner as experimental data, in particular by applying the Pulse Height Weighting Technique. The simulations have been validated against a measurement of the neutron background performed with a ^n^a^tC sample, showing an excellent agreement above 1keV. At lower energies, an additional component in the measured ^n^a^tC yield has been discovered, which prevents the use of ^n^a^tC data for neutron background estimates at neutron energies below a few hundred eV. The origin and time structure of the neutron background have been derived from the simulations. Examples of the neutron background for two different samples are demonstrating the important role of accurate simulations of the neutron background in capture cross-section measurements.The neutron sensitivity of the C$_{6}$D$_{6}$ detector setup used at n_TOF for capture measurements has been studied by means of detailed GEANT4 simulations. A realistic software replica of the entire n_TOF experimental hall, including the neutron beam line, sample, detector supports and the walls of the experimental area has been implemented in the simulations. The simulations have been analyzed in the same manner as experimental data, in particular by applying the Pulse Height Weighting Technique. The simulations have been validated against a measurement of the neutron background performed with a $^\mathrm{nat}$C sample, showing an excellent agreement above 1 keV. At lower energies, an additional component in the measured $^\mathrm{nat}$C yield has been discovered, which prevents the use of $^\mathrm{nat}$C data for neutron background estimates at neutron energies below a few hundred eV. The origin and time structure of the neutron background have been derived from the simulations. Examples of the neutron background for two different samples are demonstrating the important role of accurate simulations of the neutron background in capture cross section measurements.arXiv:1406.6865oai:cds.cern.ch:17120742014-06-26
spellingShingle physics.ins-det
Žugec, P.
Colonna, N.
Bosnar, D.
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.
Diakaki, M.
Domingo-Pardo, C.
Dressler, R.
Duran, I.
Dzysiuk, N.
Eleftheriadis, C.
Ferrari, A.
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.
Kadi, Y.
Käppeler, F.
Karadimos, D.
Kivel, N.
Koehler, P.
Kokkoris, M.
Krtička, M.
Kroll, J.
Langer, C.
Lederer, C.
Leeb, H.
Leong, L.S.
Lo Meo, S.
Losito, R.
Manousos, A.
Marganiec, J.
Martìnez, T.
Massimi, C.
Mastinu, P.F.
Mastromarco, M.
Meaze, M.
Mendoza, E.
Mengoni, A.
Milazzo, P.M.
Mingrone, F.
Mirea, M.
Mondalaers, W.
Paradela, C.
Pavlik, A.
Perkowski, J.
Plompen, A.
Praena, J.
Quesada, J.M.
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.
Ventura, A.
Versaci, R.
Vermeulen, M.J.
Vlachoudis, V.
Vlastou, R.
Wallner, A.
Ware, T.
Weigand, M.
Weiß, C.
Wright, T.
GEANT4 simulation of the neutron background of the C$_6$D$_6$ set-up for capture studies at n_TOF
title GEANT4 simulation of the neutron background of the C$_6$D$_6$ set-up for capture studies at n_TOF
title_full GEANT4 simulation of the neutron background of the C$_6$D$_6$ set-up for capture studies at n_TOF
title_fullStr GEANT4 simulation of the neutron background of the C$_6$D$_6$ set-up for capture studies at n_TOF
title_full_unstemmed GEANT4 simulation of the neutron background of the C$_6$D$_6$ set-up for capture studies at n_TOF
title_short GEANT4 simulation of the neutron background of the C$_6$D$_6$ set-up for capture studies at n_TOF
title_sort geant4 simulation of the neutron background of the c$_6$d$_6$ set-up for capture studies at n_tof
topic physics.ins-det
url https://dx.doi.org/10.1016/j.nima.2014.05.048
http://cds.cern.ch/record/1712074
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AT sarmentor geant4simulationoftheneutronbackgroundofthec6d6setupforcapturestudiesatntof
AT saxenaa geant4simulationoftheneutronbackgroundofthec6d6setupforcapturestudiesatntof
AT schillebeeckxp geant4simulationoftheneutronbackgroundofthec6d6setupforcapturestudiesatntof
AT schmidts geant4simulationoftheneutronbackgroundofthec6d6setupforcapturestudiesatntof
AT schumannd geant4simulationoftheneutronbackgroundofthec6d6setupforcapturestudiesatntof
AT taglienteg geant4simulationoftheneutronbackgroundofthec6d6setupforcapturestudiesatntof
AT tainjl geant4simulationoftheneutronbackgroundofthec6d6setupforcapturestudiesatntof
AT tarriod geant4simulationoftheneutronbackgroundofthec6d6setupforcapturestudiesatntof
AT tassangotl geant4simulationoftheneutronbackgroundofthec6d6setupforcapturestudiesatntof
AT tsinganisa geant4simulationoftheneutronbackgroundofthec6d6setupforcapturestudiesatntof
AT valentas geant4simulationoftheneutronbackgroundofthec6d6setupforcapturestudiesatntof
AT vanninig geant4simulationoftheneutronbackgroundofthec6d6setupforcapturestudiesatntof
AT varialev geant4simulationoftheneutronbackgroundofthec6d6setupforcapturestudiesatntof
AT vazp geant4simulationoftheneutronbackgroundofthec6d6setupforcapturestudiesatntof
AT venturaa geant4simulationoftheneutronbackgroundofthec6d6setupforcapturestudiesatntof
AT versacir geant4simulationoftheneutronbackgroundofthec6d6setupforcapturestudiesatntof
AT vermeulenmj geant4simulationoftheneutronbackgroundofthec6d6setupforcapturestudiesatntof
AT vlachoudisv geant4simulationoftheneutronbackgroundofthec6d6setupforcapturestudiesatntof
AT vlastour geant4simulationoftheneutronbackgroundofthec6d6setupforcapturestudiesatntof
AT wallnera geant4simulationoftheneutronbackgroundofthec6d6setupforcapturestudiesatntof
AT waret geant4simulationoftheneutronbackgroundofthec6d6setupforcapturestudiesatntof
AT weigandm geant4simulationoftheneutronbackgroundofthec6d6setupforcapturestudiesatntof
AT weißc geant4simulationoftheneutronbackgroundofthec6d6setupforcapturestudiesatntof
AT wrightt geant4simulationoftheneutronbackgroundofthec6d6setupforcapturestudiesatntof