Cargando…

New measurement of neutron capture resonances of 209Bi

The neutron capture cross section of Bi209 has been measured at the CERN n TOF facility by employing the pulse-height-weighting technique. Improvements over previous measurements are mainly because of an optimized detection system, which led to a practically negligible neutron sensitivity. Additiona...

Descripción completa

Detalles Bibliográficos
Autores principales: Domingo-Pardo, C., Abbondanno, U., Aerts, G., Alvarez-Pol, H., Alvarez-Velarde, F., Andriamonje, S., Andrzejewski, J., Assimakopoulos, P., Audouin, L., Badurek, G., Baumann, P., Becvar, F., Berthoumieux, E., Calvino, F., Cano-Ott, D., Capote, R., Carrillode Albornoz, A., Cennini, P., Chepel, V., Chiaveri, E., Colonna, N., Cortes, G., Couture, A., Cox, J., Dahlfors, M., David, S., Dillman, I., Dolfini, R., Dridi, W., Duran, I., Eleftheriadis, C., Embid-Segura, M., Ferrant, L., Ferrari, A., Ferreira-Marques, R., Fitzpatrick, L., Frais-Koelbl, H., Fujii, K., Furman, W., Gallino, R., Goncalves, I., Gonzalez-Romero, E., Goverdovski, A., Gramegna, F., Griesmayer, E., Guerrero, C., Gunsing, F., Haas, B., Haight, R., Heil, M., Herrera-Martinez, A., Igashira, M., Isaev, S., Jericha, E., Kadi, Y., Kappeler, F., Karamanis, D., Karadimos, D., Kerveno, M., Ketlerov, V., Koehler, P., Konovalov, V., Kossionides, E., Krticka, M., Lamboudis, C., Leeb, H., Lindote, A., Lopes, I., Lozano, M., Lukic, S., Marganiec, J., Marques, L., Marrone, S., Mastinu, P., Mengoni, A., Milazzo, P.M., Moreau, C., Mosconi, M., Neves, F., Oberhummer, H., Oshima, M., O'Brien, S., Pancin, J., Papachristodoulou, C., Papadopoulos, C., Paradela, C., Patronis, N., Pavlik, A., Pavlopoulos, P., Perrot, L., Plag, R., Plompen, A., Plukis, A., Poch, A., Pretel, C., Quesada, J., Rauscher, T., Reifarth, R., Rosetti, M., Rubbia, C., Rudolf, G., Rullhusen, P., Salgado, J., Sarchiapone, L., Savvidis, I., Stephan, C., Tagliente, G., Tain, J.L., Tassan-Got, L., Tavora, L., Terlizzi, R., Vannini, G., Vaz, P., Ventura, Alberto, Villamarin, D., Vincente, M.C., Vlachoudis, V., Vlastou, R., Voss, F., Walter, S., Wendler, H., Wiescher, M., Wisshak, K.
Lenguaje:eng
Publicado: 2006
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevC.74.025807
http://cds.cern.ch/record/993193
_version_ 1780911419879849984
author Domingo-Pardo, C.
Abbondanno, U.
Aerts, G.
Alvarez-Pol, H.
Alvarez-Velarde, F.
Andriamonje, S.
Andrzejewski, J.
Assimakopoulos, P.
Audouin, L.
Badurek, G.
Baumann, P.
Becvar, F.
Berthoumieux, E.
Calvino, F.
Cano-Ott, D.
Capote, R.
Carrillode Albornoz, A.
Cennini, P.
Chepel, V.
Chiaveri, E.
Colonna, N.
Cortes, G.
Couture, A.
Cox, J.
Dahlfors, M.
David, S.
Dillman, I.
Dolfini, R.
Dridi, W.
Duran, I.
Eleftheriadis, C.
Embid-Segura, M.
Ferrant, L.
Ferrari, A.
Ferreira-Marques, R.
Fitzpatrick, L.
Frais-Koelbl, H.
Fujii, K.
Furman, W.
Gallino, R.
Goncalves, I.
Gonzalez-Romero, E.
Goverdovski, A.
Gramegna, F.
Griesmayer, E.
Guerrero, C.
Gunsing, F.
Haas, B.
Haight, R.
Heil, M.
Herrera-Martinez, A.
Igashira, M.
Isaev, S.
Jericha, E.
Kadi, Y.
Kappeler, F.
Karamanis, D.
Karadimos, D.
Kerveno, M.
Ketlerov, V.
Koehler, P.
Konovalov, V.
Kossionides, E.
Krticka, M.
Lamboudis, C.
Leeb, H.
Lindote, A.
Lopes, I.
Lozano, M.
Lukic, S.
Marganiec, J.
Marques, L.
Marrone, S.
Mastinu, P.
Mengoni, A.
Milazzo, P.M.
Moreau, C.
Mosconi, M.
Neves, F.
Oberhummer, H.
Oshima, M.
O'Brien, S.
Pancin, J.
Papachristodoulou, C.
Papadopoulos, C.
Paradela, C.
Patronis, N.
Pavlik, A.
Pavlopoulos, P.
Perrot, L.
Plag, R.
Plompen, A.
Plukis, A.
Poch, A.
Pretel, C.
Quesada, J.
Rauscher, T.
Reifarth, R.
Rosetti, M.
Rubbia, C.
Rudolf, G.
Rullhusen, P.
Salgado, J.
Sarchiapone, L.
Savvidis, I.
Stephan, C.
Tagliente, G.
Tain, J.L.
Tassan-Got, L.
Tavora, L.
Terlizzi, R.
Vannini, G.
Vaz, P.
Ventura, Alberto
Villamarin, D.
Vincente, M.C.
Vlachoudis, V.
Vlastou, R.
Voss, F.
Walter, S.
Wendler, H.
Wiescher, M.
Wisshak, K.
author_facet Domingo-Pardo, C.
Abbondanno, U.
Aerts, G.
Alvarez-Pol, H.
Alvarez-Velarde, F.
Andriamonje, S.
Andrzejewski, J.
Assimakopoulos, P.
Audouin, L.
Badurek, G.
Baumann, P.
Becvar, F.
Berthoumieux, E.
Calvino, F.
Cano-Ott, D.
Capote, R.
Carrillode Albornoz, A.
Cennini, P.
Chepel, V.
Chiaveri, E.
Colonna, N.
Cortes, G.
Couture, A.
Cox, J.
Dahlfors, M.
David, S.
Dillman, I.
Dolfini, R.
Dridi, W.
Duran, I.
Eleftheriadis, C.
Embid-Segura, M.
Ferrant, L.
Ferrari, A.
Ferreira-Marques, R.
Fitzpatrick, L.
Frais-Koelbl, H.
Fujii, K.
Furman, W.
Gallino, R.
Goncalves, I.
Gonzalez-Romero, E.
Goverdovski, A.
Gramegna, F.
Griesmayer, E.
Guerrero, C.
Gunsing, F.
Haas, B.
Haight, R.
Heil, M.
Herrera-Martinez, A.
Igashira, M.
Isaev, S.
Jericha, E.
Kadi, Y.
Kappeler, F.
Karamanis, D.
Karadimos, D.
Kerveno, M.
Ketlerov, V.
Koehler, P.
Konovalov, V.
Kossionides, E.
Krticka, M.
Lamboudis, C.
Leeb, H.
Lindote, A.
Lopes, I.
Lozano, M.
Lukic, S.
Marganiec, J.
Marques, L.
Marrone, S.
Mastinu, P.
Mengoni, A.
Milazzo, P.M.
Moreau, C.
Mosconi, M.
Neves, F.
Oberhummer, H.
Oshima, M.
O'Brien, S.
Pancin, J.
Papachristodoulou, C.
Papadopoulos, C.
Paradela, C.
Patronis, N.
Pavlik, A.
Pavlopoulos, P.
Perrot, L.
Plag, R.
Plompen, A.
Plukis, A.
Poch, A.
Pretel, C.
Quesada, J.
Rauscher, T.
Reifarth, R.
Rosetti, M.
Rubbia, C.
Rudolf, G.
Rullhusen, P.
Salgado, J.
Sarchiapone, L.
Savvidis, I.
Stephan, C.
Tagliente, G.
Tain, J.L.
Tassan-Got, L.
Tavora, L.
Terlizzi, R.
Vannini, G.
Vaz, P.
Ventura, Alberto
Villamarin, D.
Vincente, M.C.
Vlachoudis, V.
Vlastou, R.
Voss, F.
Walter, S.
Wendler, H.
Wiescher, M.
Wisshak, K.
author_sort Domingo-Pardo, C.
collection CERN
description The neutron capture cross section of Bi209 has been measured at the CERN n TOF facility by employing the pulse-height-weighting technique. Improvements over previous measurements are mainly because of an optimized detection system, which led to a practically negligible neutron sensitivity. Additional experimental sources of systematic error, such as the electronic threshold in the detectors, summing of gamma-rays, internal electron conversion, and the isomeric state in bismuth, have been taken into account. Gamma-ray absorption effects inside the sample have been corrected by employing a nonpolynomial weighting function. Because Bi209 is the last stable isotope in the reaction path of the stellar s-process, the Maxwellian averaged capture cross section is important for the recycling of the reaction flow by alpha-decays. In the relevant stellar range of thermal energies between kT=5 and 8 keV our new capture rate is about 16% higher than the presently accepted value used for nucleosynthesis calculations. At this low temperature an important part of the heavy Pb-Bi isotopes are supposed to be synthesized by the s-process in the He shells of low mass, thermally pulsing asymptotic giant branch stars. With the improved set of cross sections we obtain an s-process fraction of 19(3)% of the solar bismuth abundance, resulting in an r-process residual of 81(3)%. The present (n,gamma) cross-section measurement is also of relevance for the design of accelerator driven systems based on a liquid metal Pb/Bi spallation target.
id cern-993193
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2006
record_format invenio
spelling cern-9931932022-03-04T03:10:13Zdoi:10.1103/PhysRevC.74.025807http://cds.cern.ch/record/993193engDomingo-Pardo, C.Abbondanno, U.Aerts, G.Alvarez-Pol, H.Alvarez-Velarde, F.Andriamonje, S.Andrzejewski, J.Assimakopoulos, P.Audouin, L.Badurek, G.Baumann, P.Becvar, F.Berthoumieux, E.Calvino, F.Cano-Ott, D.Capote, R.Carrillode Albornoz, A.Cennini, P.Chepel, V.Chiaveri, E.Colonna, N.Cortes, G.Couture, A.Cox, J.Dahlfors, M.David, S.Dillman, I.Dolfini, R.Dridi, W.Duran, I.Eleftheriadis, C.Embid-Segura, M.Ferrant, L.Ferrari, A.Ferreira-Marques, R.Fitzpatrick, L.Frais-Koelbl, H.Fujii, K.Furman, W.Gallino, R.Goncalves, I.Gonzalez-Romero, E.Goverdovski, A.Gramegna, F.Griesmayer, E.Guerrero, C.Gunsing, F.Haas, B.Haight, R.Heil, M.Herrera-Martinez, A.Igashira, M.Isaev, S.Jericha, E.Kadi, Y.Kappeler, F.Karamanis, D.Karadimos, D.Kerveno, M.Ketlerov, V.Koehler, P.Konovalov, V.Kossionides, E.Krticka, M.Lamboudis, C.Leeb, H.Lindote, A.Lopes, I.Lozano, M.Lukic, S.Marganiec, J.Marques, L.Marrone, S.Mastinu, P.Mengoni, A.Milazzo, P.M.Moreau, C.Mosconi, M.Neves, F.Oberhummer, H.Oshima, M.O'Brien, S.Pancin, J.Papachristodoulou, C.Papadopoulos, C.Paradela, C.Patronis, N.Pavlik, A.Pavlopoulos, P.Perrot, L.Plag, R.Plompen, A.Plukis, A.Poch, A.Pretel, C.Quesada, J.Rauscher, T.Reifarth, R.Rosetti, M.Rubbia, C.Rudolf, G.Rullhusen, P.Salgado, J.Sarchiapone, L.Savvidis, I.Stephan, C.Tagliente, G.Tain, J.L.Tassan-Got, L.Tavora, L.Terlizzi, R.Vannini, G.Vaz, P.Ventura, AlbertoVillamarin, D.Vincente, M.C.Vlachoudis, V.Vlastou, R.Voss, F.Walter, S.Wendler, H.Wiescher, M.Wisshak, K.New measurement of neutron capture resonances of 209BiNuclear Physics - ExperimentThe neutron capture cross section of Bi209 has been measured at the CERN n TOF facility by employing the pulse-height-weighting technique. Improvements over previous measurements are mainly because of an optimized detection system, which led to a practically negligible neutron sensitivity. Additional experimental sources of systematic error, such as the electronic threshold in the detectors, summing of gamma-rays, internal electron conversion, and the isomeric state in bismuth, have been taken into account. Gamma-ray absorption effects inside the sample have been corrected by employing a nonpolynomial weighting function. Because Bi209 is the last stable isotope in the reaction path of the stellar s-process, the Maxwellian averaged capture cross section is important for the recycling of the reaction flow by alpha-decays. In the relevant stellar range of thermal energies between kT=5 and 8 keV our new capture rate is about 16% higher than the presently accepted value used for nucleosynthesis calculations. At this low temperature an important part of the heavy Pb-Bi isotopes are supposed to be synthesized by the s-process in the He shells of low mass, thermally pulsing asymptotic giant branch stars. With the improved set of cross sections we obtain an s-process fraction of 19(3)% of the solar bismuth abundance, resulting in an r-process residual of 81(3)%. The present (n,gamma) cross-section measurement is also of relevance for the design of accelerator driven systems based on a liquid metal Pb/Bi spallation target.The neutron capture cross section of Bi209 has been measured at the CERN n TOF facility by employing the pulse-height-weighting technique. Improvements over previous measurements are mainly because of an optimized detection system, which led to a practically negligible neutron sensitivity. Additional experimental sources of systematic error, such as the electronic threshold in the detectors, summing of gamma-rays, internal electron conversion, and the isomeric state in bismuth, have been taken into account. Gamma-ray absorption effects inside the sample have been corrected by employing a nonpolynomial weighting function. Because Bi209 is the last stable isotope in the reaction path of the stellar s-process, the Maxwellian averaged capture cross section is important for the recycling of the reaction flow by alpha-decays. In the relevant stellar range of thermal energies between kT=5 and 8 keV our new capture rate is about 16% higher than the presently accepted value used for nucleosynthesis calculations. At this low temperature an important part of the heavy Pb-Bi isotopes are supposed to be synthesized by the s-process in the He shells of low mass, thermally pulsing asymptotic giant branch stars. With the improved set of cross sections we obtain an s-process fraction of 19(3)% of the solar bismuth abundance, resulting in an r-process residual of 81(3)%. The present (n,gamma) cross-section measurement is also of relevance for the design of accelerator driven systems based on a liquid metal Pb/Bi spallation target.nucl-ex/0610040oai:cds.cern.ch:9931932006-10-26
spellingShingle Nuclear Physics - Experiment
Domingo-Pardo, C.
Abbondanno, U.
Aerts, G.
Alvarez-Pol, H.
Alvarez-Velarde, F.
Andriamonje, S.
Andrzejewski, J.
Assimakopoulos, P.
Audouin, L.
Badurek, G.
Baumann, P.
Becvar, F.
Berthoumieux, E.
Calvino, F.
Cano-Ott, D.
Capote, R.
Carrillode Albornoz, A.
Cennini, P.
Chepel, V.
Chiaveri, E.
Colonna, N.
Cortes, G.
Couture, A.
Cox, J.
Dahlfors, M.
David, S.
Dillman, I.
Dolfini, R.
Dridi, W.
Duran, I.
Eleftheriadis, C.
Embid-Segura, M.
Ferrant, L.
Ferrari, A.
Ferreira-Marques, R.
Fitzpatrick, L.
Frais-Koelbl, H.
Fujii, K.
Furman, W.
Gallino, R.
Goncalves, I.
Gonzalez-Romero, E.
Goverdovski, A.
Gramegna, F.
Griesmayer, E.
Guerrero, C.
Gunsing, F.
Haas, B.
Haight, R.
Heil, M.
Herrera-Martinez, A.
Igashira, M.
Isaev, S.
Jericha, E.
Kadi, Y.
Kappeler, F.
Karamanis, D.
Karadimos, D.
Kerveno, M.
Ketlerov, V.
Koehler, P.
Konovalov, V.
Kossionides, E.
Krticka, M.
Lamboudis, C.
Leeb, H.
Lindote, A.
Lopes, I.
Lozano, M.
Lukic, S.
Marganiec, J.
Marques, L.
Marrone, S.
Mastinu, P.
Mengoni, A.
Milazzo, P.M.
Moreau, C.
Mosconi, M.
Neves, F.
Oberhummer, H.
Oshima, M.
O'Brien, S.
Pancin, J.
Papachristodoulou, C.
Papadopoulos, C.
Paradela, C.
Patronis, N.
Pavlik, A.
Pavlopoulos, P.
Perrot, L.
Plag, R.
Plompen, A.
Plukis, A.
Poch, A.
Pretel, C.
Quesada, J.
Rauscher, T.
Reifarth, R.
Rosetti, M.
Rubbia, C.
Rudolf, G.
Rullhusen, P.
Salgado, J.
Sarchiapone, L.
Savvidis, I.
Stephan, C.
Tagliente, G.
Tain, J.L.
Tassan-Got, L.
Tavora, L.
Terlizzi, R.
Vannini, G.
Vaz, P.
Ventura, Alberto
Villamarin, D.
Vincente, M.C.
Vlachoudis, V.
Vlastou, R.
Voss, F.
Walter, S.
Wendler, H.
Wiescher, M.
Wisshak, K.
New measurement of neutron capture resonances of 209Bi
title New measurement of neutron capture resonances of 209Bi
title_full New measurement of neutron capture resonances of 209Bi
title_fullStr New measurement of neutron capture resonances of 209Bi
title_full_unstemmed New measurement of neutron capture resonances of 209Bi
title_short New measurement of neutron capture resonances of 209Bi
title_sort new measurement of neutron capture resonances of 209bi
topic Nuclear Physics - Experiment
url https://dx.doi.org/10.1103/PhysRevC.74.025807
http://cds.cern.ch/record/993193
work_keys_str_mv AT domingopardoc newmeasurementofneutroncaptureresonancesof209bi
AT abbondannou newmeasurementofneutroncaptureresonancesof209bi
AT aertsg newmeasurementofneutroncaptureresonancesof209bi
AT alvarezpolh newmeasurementofneutroncaptureresonancesof209bi
AT alvarezvelardef newmeasurementofneutroncaptureresonancesof209bi
AT andriamonjes newmeasurementofneutroncaptureresonancesof209bi
AT andrzejewskij newmeasurementofneutroncaptureresonancesof209bi
AT assimakopoulosp newmeasurementofneutroncaptureresonancesof209bi
AT audouinl newmeasurementofneutroncaptureresonancesof209bi
AT badurekg newmeasurementofneutroncaptureresonancesof209bi
AT baumannp newmeasurementofneutroncaptureresonancesof209bi
AT becvarf newmeasurementofneutroncaptureresonancesof209bi
AT berthoumieuxe newmeasurementofneutroncaptureresonancesof209bi
AT calvinof newmeasurementofneutroncaptureresonancesof209bi
AT canoottd newmeasurementofneutroncaptureresonancesof209bi
AT capoter newmeasurementofneutroncaptureresonancesof209bi
AT carrillodealbornoza newmeasurementofneutroncaptureresonancesof209bi
AT cenninip newmeasurementofneutroncaptureresonancesof209bi
AT chepelv newmeasurementofneutroncaptureresonancesof209bi
AT chiaverie newmeasurementofneutroncaptureresonancesof209bi
AT colonnan newmeasurementofneutroncaptureresonancesof209bi
AT cortesg newmeasurementofneutroncaptureresonancesof209bi
AT couturea newmeasurementofneutroncaptureresonancesof209bi
AT coxj newmeasurementofneutroncaptureresonancesof209bi
AT dahlforsm newmeasurementofneutroncaptureresonancesof209bi
AT davids newmeasurementofneutroncaptureresonancesof209bi
AT dillmani newmeasurementofneutroncaptureresonancesof209bi
AT dolfinir newmeasurementofneutroncaptureresonancesof209bi
AT dridiw newmeasurementofneutroncaptureresonancesof209bi
AT durani newmeasurementofneutroncaptureresonancesof209bi
AT eleftheriadisc newmeasurementofneutroncaptureresonancesof209bi
AT embidseguram newmeasurementofneutroncaptureresonancesof209bi
AT ferrantl newmeasurementofneutroncaptureresonancesof209bi
AT ferraria newmeasurementofneutroncaptureresonancesof209bi
AT ferreiramarquesr newmeasurementofneutroncaptureresonancesof209bi
AT fitzpatrickl newmeasurementofneutroncaptureresonancesof209bi
AT fraiskoelblh newmeasurementofneutroncaptureresonancesof209bi
AT fujiik newmeasurementofneutroncaptureresonancesof209bi
AT furmanw newmeasurementofneutroncaptureresonancesof209bi
AT gallinor newmeasurementofneutroncaptureresonancesof209bi
AT goncalvesi newmeasurementofneutroncaptureresonancesof209bi
AT gonzalezromeroe newmeasurementofneutroncaptureresonancesof209bi
AT goverdovskia newmeasurementofneutroncaptureresonancesof209bi
AT gramegnaf newmeasurementofneutroncaptureresonancesof209bi
AT griesmayere newmeasurementofneutroncaptureresonancesof209bi
AT guerreroc newmeasurementofneutroncaptureresonancesof209bi
AT gunsingf newmeasurementofneutroncaptureresonancesof209bi
AT haasb newmeasurementofneutroncaptureresonancesof209bi
AT haightr newmeasurementofneutroncaptureresonancesof209bi
AT heilm newmeasurementofneutroncaptureresonancesof209bi
AT herreramartineza newmeasurementofneutroncaptureresonancesof209bi
AT igashiram newmeasurementofneutroncaptureresonancesof209bi
AT isaevs newmeasurementofneutroncaptureresonancesof209bi
AT jerichae newmeasurementofneutroncaptureresonancesof209bi
AT kadiy newmeasurementofneutroncaptureresonancesof209bi
AT kappelerf newmeasurementofneutroncaptureresonancesof209bi
AT karamanisd newmeasurementofneutroncaptureresonancesof209bi
AT karadimosd newmeasurementofneutroncaptureresonancesof209bi
AT kervenom newmeasurementofneutroncaptureresonancesof209bi
AT ketlerovv newmeasurementofneutroncaptureresonancesof209bi
AT koehlerp newmeasurementofneutroncaptureresonancesof209bi
AT konovalovv newmeasurementofneutroncaptureresonancesof209bi
AT kossionidese newmeasurementofneutroncaptureresonancesof209bi
AT krtickam newmeasurementofneutroncaptureresonancesof209bi
AT lamboudisc newmeasurementofneutroncaptureresonancesof209bi
AT leebh newmeasurementofneutroncaptureresonancesof209bi
AT lindotea newmeasurementofneutroncaptureresonancesof209bi
AT lopesi newmeasurementofneutroncaptureresonancesof209bi
AT lozanom newmeasurementofneutroncaptureresonancesof209bi
AT lukics newmeasurementofneutroncaptureresonancesof209bi
AT marganiecj newmeasurementofneutroncaptureresonancesof209bi
AT marquesl newmeasurementofneutroncaptureresonancesof209bi
AT marrones newmeasurementofneutroncaptureresonancesof209bi
AT mastinup newmeasurementofneutroncaptureresonancesof209bi
AT mengonia newmeasurementofneutroncaptureresonancesof209bi
AT milazzopm newmeasurementofneutroncaptureresonancesof209bi
AT moreauc newmeasurementofneutroncaptureresonancesof209bi
AT mosconim newmeasurementofneutroncaptureresonancesof209bi
AT nevesf newmeasurementofneutroncaptureresonancesof209bi
AT oberhummerh newmeasurementofneutroncaptureresonancesof209bi
AT oshimam newmeasurementofneutroncaptureresonancesof209bi
AT obriens newmeasurementofneutroncaptureresonancesof209bi
AT pancinj newmeasurementofneutroncaptureresonancesof209bi
AT papachristodoulouc newmeasurementofneutroncaptureresonancesof209bi
AT papadopoulosc newmeasurementofneutroncaptureresonancesof209bi
AT paradelac newmeasurementofneutroncaptureresonancesof209bi
AT patronisn newmeasurementofneutroncaptureresonancesof209bi
AT pavlika newmeasurementofneutroncaptureresonancesof209bi
AT pavlopoulosp newmeasurementofneutroncaptureresonancesof209bi
AT perrotl newmeasurementofneutroncaptureresonancesof209bi
AT plagr newmeasurementofneutroncaptureresonancesof209bi
AT plompena newmeasurementofneutroncaptureresonancesof209bi
AT plukisa newmeasurementofneutroncaptureresonancesof209bi
AT pocha newmeasurementofneutroncaptureresonancesof209bi
AT pretelc newmeasurementofneutroncaptureresonancesof209bi
AT quesadaj newmeasurementofneutroncaptureresonancesof209bi
AT rauschert newmeasurementofneutroncaptureresonancesof209bi
AT reifarthr newmeasurementofneutroncaptureresonancesof209bi
AT rosettim newmeasurementofneutroncaptureresonancesof209bi
AT rubbiac newmeasurementofneutroncaptureresonancesof209bi
AT rudolfg newmeasurementofneutroncaptureresonancesof209bi
AT rullhusenp newmeasurementofneutroncaptureresonancesof209bi
AT salgadoj newmeasurementofneutroncaptureresonancesof209bi
AT sarchiaponel newmeasurementofneutroncaptureresonancesof209bi
AT savvidisi newmeasurementofneutroncaptureresonancesof209bi
AT stephanc newmeasurementofneutroncaptureresonancesof209bi
AT taglienteg newmeasurementofneutroncaptureresonancesof209bi
AT tainjl newmeasurementofneutroncaptureresonancesof209bi
AT tassangotl newmeasurementofneutroncaptureresonancesof209bi
AT tavoral newmeasurementofneutroncaptureresonancesof209bi
AT terlizzir newmeasurementofneutroncaptureresonancesof209bi
AT vanninig newmeasurementofneutroncaptureresonancesof209bi
AT vazp newmeasurementofneutroncaptureresonancesof209bi
AT venturaalberto newmeasurementofneutroncaptureresonancesof209bi
AT villamarind newmeasurementofneutroncaptureresonancesof209bi
AT vincentemc newmeasurementofneutroncaptureresonancesof209bi
AT vlachoudisv newmeasurementofneutroncaptureresonancesof209bi
AT vlastour newmeasurementofneutroncaptureresonancesof209bi
AT vossf newmeasurementofneutroncaptureresonancesof209bi
AT walters newmeasurementofneutroncaptureresonancesof209bi
AT wendlerh newmeasurementofneutroncaptureresonancesof209bi
AT wiescherm newmeasurementofneutroncaptureresonancesof209bi
AT wisshakk newmeasurementofneutroncaptureresonancesof209bi