High-accuracy determination of the U 238 / U 235 fission cross section ratio up to ≈1 GeV at n-TOF at CERN
The U238 to U235 fission cross section ratio has been determined at n-TOF up to ≈1 GeV, with two different detection systems, in different geometrical configurations. A total of four datasets has been collected and compared. They are all consistent to each other within the relative systematic uncert...
Ausführliche Beschreibung
Autor*in: |
Paradela, C [verfasserIn] |
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Sprache: |
Englisch |
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2015 |
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Systematik: |
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Übergeordnetes Werk: |
Enthalten in: Physical review / C - Woodbury, NY : Inst., 1970, (2015) |
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Übergeordnetes Werk: |
year:2015 |
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DOI / URN: |
10.1103/PhysRevC.91.024602 |
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Katalog-ID: |
OLC1966214375 |
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245 | 1 | 0 | |a High-accuracy determination of the U 238 / U 235 fission cross section ratio up to ≈1 GeV at n-TOF at CERN |
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520 | |a The U238 to U235 fission cross section ratio has been determined at n-TOF up to ≈1 GeV, with two different detection systems, in different geometrical configurations. A total of four datasets has been collected and compared. They are all consistent to each other within the relative systematic uncertainty of 3-4%. The data collected at n-TOF have been suitably combined to yield a unique fission cross section ratio as a function of neutron energy. The result confirms current evaluations up to 200 MeV. Good agreement is also observed with theoretical calculations based on the INCL++/Gemini++ combination up to the highest measured energy. The n-TOF results may help solve a long-standing discrepancy between the two most important experimental datasets available so far above 20 MeV, while extending the neutron energy range for the first time up to ≈1 GeV. Published by the American Physical Society under the terms of the Creative Commons Attribution 3.0 License. Further distribution of this work must maintain attribution to the author(s) and the published article’s title, journal citation, and DOI | ||
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10.1103/PhysRevC.91.024602 doi PQ20160617 (DE-627)OLC1966214375 (DE-599)GBVOLC1966214375 (PRQ)herts_dspace_oai_uhra_herts_ac_uk_2299_155020 (KEY)0054933920150000000000000000highaccuracydeterminationoftheu238u235fissioncross DE-627 ger DE-627 rakwb eng 530 DNB UA 6500. AVZ rvk Paradela, C verfasserin aut High-accuracy determination of the U 238 / U 235 fission cross section ratio up to ≈1 GeV at n-TOF at CERN 2015 Text txt rdacontent ohne Hilfsmittel zu benutzen n rdamedia Band nc rdacarrier The U238 to U235 fission cross section ratio has been determined at n-TOF up to ≈1 GeV, with two different detection systems, in different geometrical configurations. A total of four datasets has been collected and compared. They are all consistent to each other within the relative systematic uncertainty of 3-4%. The data collected at n-TOF have been suitably combined to yield a unique fission cross section ratio as a function of neutron energy. The result confirms current evaluations up to 200 MeV. Good agreement is also observed with theoretical calculations based on the INCL++/Gemini++ combination up to the highest measured energy. The n-TOF results may help solve a long-standing discrepancy between the two most important experimental datasets available so far above 20 MeV, while extending the neutron energy range for the first time up to ≈1 GeV. Published by the American Physical Society under the terms of the Creative Commons Attribution 3.0 License. Further distribution of this work must maintain attribution to the author(s) and the published article’s title, journal citation, and DOI Nuclear and High Energy Physics Calviani, M oth Tarrío, D oth Leal-Cidoncha, E oth Leong, L. S oth Tassan-Got, L oth Le Naour, C oth Duran, I oth Colonna, N oth Audouin, L oth Mastromarco, M oth Lo Meo, S oth Ventura, A oth Aerts, G oth Altstadt, S oth Álvarez, H oth Álvarez-Velarde, F oth Andriamonje, S oth Andrzejewski, J oth Badurek, G oth Barbagallo, M oth Baumann, P oth Bécares, V oth Bečvář, F oth Belloni, F oth Berthier, B oth Berthoumieux, E oth Billowes, J oth Boccone, V oth Bosnar, D oth Brugger, M oth Calviño, F oth Cano-Ott, D oth Capote, R oth Carrapiço, C oth Cennini, P oth Cerutti, F oth Chiaveri, E oth Chin, M oth Cortés, G oth Cortés-Giraldo, M. A oth Cosentino, L oth Couture, A oth Cox, J oth David, S oth Diakaki, M oth Dillmann, I oth Domingo-Pardo, C oth Dressler, R oth Dridi, W oth Eleftheriadis, C oth Embid-Segura, M oth Ferrant, L oth Ferrari, A oth Finocchiaro, P oth Fraval, K oth Fujii, K oth Furman, W oth Ganesan, S oth García, A. R oth Giubrone, G oth Gómez-Hornillos, M. B oth Gonçalves, I. F oth González-Romero, E oth Goverdovski, A oth Gramegna, F oth Griesmayer, E oth Guerrero, C oth Gunsing, F oth Gurusamy, P oth Haight, R oth Heil, M oth Heinitz, S oth Igashira, M oth Isaev, S oth Jenkins, D. G oth Jericha, E oth Kadi, Y oth Käppeler, F oth Karadimos, D oth Karamanis, D oth Kerveno, M oth Ketlerov, V oth Kivel, N oth Kokkoris, M oth Konovalov, V oth Krtička, M oth Kroll, J oth Lampoudis, C oth Langer, C oth Lederer, C oth Leeb, H oth Losito, R oth Lozano, M oth Manousos, A oth Marganiec, J oth Martínez, T oth Marrone, S oth Massimi, C oth Mastinu, P oth ... oth Enthalten in Physical review / C Woodbury, NY : Inst., 1970 (2015) (DE-627)129508659 (DE-600)209771-0 (DE-576)01491493X 2469-9985 nnns year:2015 http://dx.doi.org/10.1103/PhysRevC.91.024602 Volltext http://hdl.handle.net/2299/15502 GBV_USEFLAG_A SYSFLAG_A GBV_OLC SSG-OLC-PHY SSG-OPC-AST GBV_ILN_21 GBV_ILN_40 GBV_ILN_70 GBV_ILN_2279 UA 6500. AR 2015 |
spelling |
10.1103/PhysRevC.91.024602 doi PQ20160617 (DE-627)OLC1966214375 (DE-599)GBVOLC1966214375 (PRQ)herts_dspace_oai_uhra_herts_ac_uk_2299_155020 (KEY)0054933920150000000000000000highaccuracydeterminationoftheu238u235fissioncross DE-627 ger DE-627 rakwb eng 530 DNB UA 6500. AVZ rvk Paradela, C verfasserin aut High-accuracy determination of the U 238 / U 235 fission cross section ratio up to ≈1 GeV at n-TOF at CERN 2015 Text txt rdacontent ohne Hilfsmittel zu benutzen n rdamedia Band nc rdacarrier The U238 to U235 fission cross section ratio has been determined at n-TOF up to ≈1 GeV, with two different detection systems, in different geometrical configurations. A total of four datasets has been collected and compared. They are all consistent to each other within the relative systematic uncertainty of 3-4%. The data collected at n-TOF have been suitably combined to yield a unique fission cross section ratio as a function of neutron energy. The result confirms current evaluations up to 200 MeV. Good agreement is also observed with theoretical calculations based on the INCL++/Gemini++ combination up to the highest measured energy. The n-TOF results may help solve a long-standing discrepancy between the two most important experimental datasets available so far above 20 MeV, while extending the neutron energy range for the first time up to ≈1 GeV. Published by the American Physical Society under the terms of the Creative Commons Attribution 3.0 License. Further distribution of this work must maintain attribution to the author(s) and the published article’s title, journal citation, and DOI Nuclear and High Energy Physics Calviani, M oth Tarrío, D oth Leal-Cidoncha, E oth Leong, L. S oth Tassan-Got, L oth Le Naour, C oth Duran, I oth Colonna, N oth Audouin, L oth Mastromarco, M oth Lo Meo, S oth Ventura, A oth Aerts, G oth Altstadt, S oth Álvarez, H oth Álvarez-Velarde, F oth Andriamonje, S oth Andrzejewski, J oth Badurek, G oth Barbagallo, M oth Baumann, P oth Bécares, V oth Bečvář, F oth Belloni, F oth Berthier, B oth Berthoumieux, E oth Billowes, J oth Boccone, V oth Bosnar, D oth Brugger, M oth Calviño, F oth Cano-Ott, D oth Capote, R oth Carrapiço, C oth Cennini, P oth Cerutti, F oth Chiaveri, E oth Chin, M oth Cortés, G oth Cortés-Giraldo, M. A oth Cosentino, L oth Couture, A oth Cox, J oth David, S oth Diakaki, M oth Dillmann, I oth Domingo-Pardo, C oth Dressler, R oth Dridi, W oth Eleftheriadis, C oth Embid-Segura, M oth Ferrant, L oth Ferrari, A oth Finocchiaro, P oth Fraval, K oth Fujii, K oth Furman, W oth Ganesan, S oth García, A. R oth Giubrone, G oth Gómez-Hornillos, M. B oth Gonçalves, I. F oth González-Romero, E oth Goverdovski, A oth Gramegna, F oth Griesmayer, E oth Guerrero, C oth Gunsing, F oth Gurusamy, P oth Haight, R oth Heil, M oth Heinitz, S oth Igashira, M oth Isaev, S oth Jenkins, D. G oth Jericha, E oth Kadi, Y oth Käppeler, F oth Karadimos, D oth Karamanis, D oth Kerveno, M oth Ketlerov, V oth Kivel, N oth Kokkoris, M oth Konovalov, V oth Krtička, M oth Kroll, J oth Lampoudis, C oth Langer, C oth Lederer, C oth Leeb, H oth Losito, R oth Lozano, M oth Manousos, A oth Marganiec, J oth Martínez, T oth Marrone, S oth Massimi, C oth Mastinu, P oth ... oth Enthalten in Physical review / C Woodbury, NY : Inst., 1970 (2015) (DE-627)129508659 (DE-600)209771-0 (DE-576)01491493X 2469-9985 nnns year:2015 http://dx.doi.org/10.1103/PhysRevC.91.024602 Volltext http://hdl.handle.net/2299/15502 GBV_USEFLAG_A SYSFLAG_A GBV_OLC SSG-OLC-PHY SSG-OPC-AST GBV_ILN_21 GBV_ILN_40 GBV_ILN_70 GBV_ILN_2279 UA 6500. AR 2015 |
allfields_unstemmed |
10.1103/PhysRevC.91.024602 doi PQ20160617 (DE-627)OLC1966214375 (DE-599)GBVOLC1966214375 (PRQ)herts_dspace_oai_uhra_herts_ac_uk_2299_155020 (KEY)0054933920150000000000000000highaccuracydeterminationoftheu238u235fissioncross DE-627 ger DE-627 rakwb eng 530 DNB UA 6500. AVZ rvk Paradela, C verfasserin aut High-accuracy determination of the U 238 / U 235 fission cross section ratio up to ≈1 GeV at n-TOF at CERN 2015 Text txt rdacontent ohne Hilfsmittel zu benutzen n rdamedia Band nc rdacarrier The U238 to U235 fission cross section ratio has been determined at n-TOF up to ≈1 GeV, with two different detection systems, in different geometrical configurations. A total of four datasets has been collected and compared. They are all consistent to each other within the relative systematic uncertainty of 3-4%. The data collected at n-TOF have been suitably combined to yield a unique fission cross section ratio as a function of neutron energy. The result confirms current evaluations up to 200 MeV. Good agreement is also observed with theoretical calculations based on the INCL++/Gemini++ combination up to the highest measured energy. The n-TOF results may help solve a long-standing discrepancy between the two most important experimental datasets available so far above 20 MeV, while extending the neutron energy range for the first time up to ≈1 GeV. Published by the American Physical Society under the terms of the Creative Commons Attribution 3.0 License. Further distribution of this work must maintain attribution to the author(s) and the published article’s title, journal citation, and DOI Nuclear and High Energy Physics Calviani, M oth Tarrío, D oth Leal-Cidoncha, E oth Leong, L. S oth Tassan-Got, L oth Le Naour, C oth Duran, I oth Colonna, N oth Audouin, L oth Mastromarco, M oth Lo Meo, S oth Ventura, A oth Aerts, G oth Altstadt, S oth Álvarez, H oth Álvarez-Velarde, F oth Andriamonje, S oth Andrzejewski, J oth Badurek, G oth Barbagallo, M oth Baumann, P oth Bécares, V oth Bečvář, F oth Belloni, F oth Berthier, B oth Berthoumieux, E oth Billowes, J oth Boccone, V oth Bosnar, D oth Brugger, M oth Calviño, F oth Cano-Ott, D oth Capote, R oth Carrapiço, C oth Cennini, P oth Cerutti, F oth Chiaveri, E oth Chin, M oth Cortés, G oth Cortés-Giraldo, M. A oth Cosentino, L oth Couture, A oth Cox, J oth David, S oth Diakaki, M oth Dillmann, I oth Domingo-Pardo, C oth Dressler, R oth Dridi, W oth Eleftheriadis, C oth Embid-Segura, M oth Ferrant, L oth Ferrari, A oth Finocchiaro, P oth Fraval, K oth Fujii, K oth Furman, W oth Ganesan, S oth García, A. R oth Giubrone, G oth Gómez-Hornillos, M. B oth Gonçalves, I. F oth González-Romero, E oth Goverdovski, A oth Gramegna, F oth Griesmayer, E oth Guerrero, C oth Gunsing, F oth Gurusamy, P oth Haight, R oth Heil, M oth Heinitz, S oth Igashira, M oth Isaev, S oth Jenkins, D. G oth Jericha, E oth Kadi, Y oth Käppeler, F oth Karadimos, D oth Karamanis, D oth Kerveno, M oth Ketlerov, V oth Kivel, N oth Kokkoris, M oth Konovalov, V oth Krtička, M oth Kroll, J oth Lampoudis, C oth Langer, C oth Lederer, C oth Leeb, H oth Losito, R oth Lozano, M oth Manousos, A oth Marganiec, J oth Martínez, T oth Marrone, S oth Massimi, C oth Mastinu, P oth ... oth Enthalten in Physical review / C Woodbury, NY : Inst., 1970 (2015) (DE-627)129508659 (DE-600)209771-0 (DE-576)01491493X 2469-9985 nnns year:2015 http://dx.doi.org/10.1103/PhysRevC.91.024602 Volltext http://hdl.handle.net/2299/15502 GBV_USEFLAG_A SYSFLAG_A GBV_OLC SSG-OLC-PHY SSG-OPC-AST GBV_ILN_21 GBV_ILN_40 GBV_ILN_70 GBV_ILN_2279 UA 6500. AR 2015 |
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10.1103/PhysRevC.91.024602 doi PQ20160617 (DE-627)OLC1966214375 (DE-599)GBVOLC1966214375 (PRQ)herts_dspace_oai_uhra_herts_ac_uk_2299_155020 (KEY)0054933920150000000000000000highaccuracydeterminationoftheu238u235fissioncross DE-627 ger DE-627 rakwb eng 530 DNB UA 6500. AVZ rvk Paradela, C verfasserin aut High-accuracy determination of the U 238 / U 235 fission cross section ratio up to ≈1 GeV at n-TOF at CERN 2015 Text txt rdacontent ohne Hilfsmittel zu benutzen n rdamedia Band nc rdacarrier The U238 to U235 fission cross section ratio has been determined at n-TOF up to ≈1 GeV, with two different detection systems, in different geometrical configurations. A total of four datasets has been collected and compared. They are all consistent to each other within the relative systematic uncertainty of 3-4%. The data collected at n-TOF have been suitably combined to yield a unique fission cross section ratio as a function of neutron energy. The result confirms current evaluations up to 200 MeV. Good agreement is also observed with theoretical calculations based on the INCL++/Gemini++ combination up to the highest measured energy. The n-TOF results may help solve a long-standing discrepancy between the two most important experimental datasets available so far above 20 MeV, while extending the neutron energy range for the first time up to ≈1 GeV. Published by the American Physical Society under the terms of the Creative Commons Attribution 3.0 License. Further distribution of this work must maintain attribution to the author(s) and the published article’s title, journal citation, and DOI Nuclear and High Energy Physics Calviani, M oth Tarrío, D oth Leal-Cidoncha, E oth Leong, L. S oth Tassan-Got, L oth Le Naour, C oth Duran, I oth Colonna, N oth Audouin, L oth Mastromarco, M oth Lo Meo, S oth Ventura, A oth Aerts, G oth Altstadt, S oth Álvarez, H oth Álvarez-Velarde, F oth Andriamonje, S oth Andrzejewski, J oth Badurek, G oth Barbagallo, M oth Baumann, P oth Bécares, V oth Bečvář, F oth Belloni, F oth Berthier, B oth Berthoumieux, E oth Billowes, J oth Boccone, V oth Bosnar, D oth Brugger, M oth Calviño, F oth Cano-Ott, D oth Capote, R oth Carrapiço, C oth Cennini, P oth Cerutti, F oth Chiaveri, E oth Chin, M oth Cortés, G oth Cortés-Giraldo, M. A oth Cosentino, L oth Couture, A oth Cox, J oth David, S oth Diakaki, M oth Dillmann, I oth Domingo-Pardo, C oth Dressler, R oth Dridi, W oth Eleftheriadis, C oth Embid-Segura, M oth Ferrant, L oth Ferrari, A oth Finocchiaro, P oth Fraval, K oth Fujii, K oth Furman, W oth Ganesan, S oth García, A. R oth Giubrone, G oth Gómez-Hornillos, M. B oth Gonçalves, I. F oth González-Romero, E oth Goverdovski, A oth Gramegna, F oth Griesmayer, E oth Guerrero, C oth Gunsing, F oth Gurusamy, P oth Haight, R oth Heil, M oth Heinitz, S oth Igashira, M oth Isaev, S oth Jenkins, D. G oth Jericha, E oth Kadi, Y oth Käppeler, F oth Karadimos, D oth Karamanis, D oth Kerveno, M oth Ketlerov, V oth Kivel, N oth Kokkoris, M oth Konovalov, V oth Krtička, M oth Kroll, J oth Lampoudis, C oth Langer, C oth Lederer, C oth Leeb, H oth Losito, R oth Lozano, M oth Manousos, A oth Marganiec, J oth Martínez, T oth Marrone, S oth Massimi, C oth Mastinu, P oth ... oth Enthalten in Physical review / C Woodbury, NY : Inst., 1970 (2015) (DE-627)129508659 (DE-600)209771-0 (DE-576)01491493X 2469-9985 nnns year:2015 http://dx.doi.org/10.1103/PhysRevC.91.024602 Volltext http://hdl.handle.net/2299/15502 GBV_USEFLAG_A SYSFLAG_A GBV_OLC SSG-OLC-PHY SSG-OPC-AST GBV_ILN_21 GBV_ILN_40 GBV_ILN_70 GBV_ILN_2279 UA 6500. AR 2015 |
allfieldsSound |
10.1103/PhysRevC.91.024602 doi PQ20160617 (DE-627)OLC1966214375 (DE-599)GBVOLC1966214375 (PRQ)herts_dspace_oai_uhra_herts_ac_uk_2299_155020 (KEY)0054933920150000000000000000highaccuracydeterminationoftheu238u235fissioncross DE-627 ger DE-627 rakwb eng 530 DNB UA 6500. AVZ rvk Paradela, C verfasserin aut High-accuracy determination of the U 238 / U 235 fission cross section ratio up to ≈1 GeV at n-TOF at CERN 2015 Text txt rdacontent ohne Hilfsmittel zu benutzen n rdamedia Band nc rdacarrier The U238 to U235 fission cross section ratio has been determined at n-TOF up to ≈1 GeV, with two different detection systems, in different geometrical configurations. A total of four datasets has been collected and compared. They are all consistent to each other within the relative systematic uncertainty of 3-4%. The data collected at n-TOF have been suitably combined to yield a unique fission cross section ratio as a function of neutron energy. The result confirms current evaluations up to 200 MeV. Good agreement is also observed with theoretical calculations based on the INCL++/Gemini++ combination up to the highest measured energy. The n-TOF results may help solve a long-standing discrepancy between the two most important experimental datasets available so far above 20 MeV, while extending the neutron energy range for the first time up to ≈1 GeV. Published by the American Physical Society under the terms of the Creative Commons Attribution 3.0 License. Further distribution of this work must maintain attribution to the author(s) and the published article’s title, journal citation, and DOI Nuclear and High Energy Physics Calviani, M oth Tarrío, D oth Leal-Cidoncha, E oth Leong, L. S oth Tassan-Got, L oth Le Naour, C oth Duran, I oth Colonna, N oth Audouin, L oth Mastromarco, M oth Lo Meo, S oth Ventura, A oth Aerts, G oth Altstadt, S oth Álvarez, H oth Álvarez-Velarde, F oth Andriamonje, S oth Andrzejewski, J oth Badurek, G oth Barbagallo, M oth Baumann, P oth Bécares, V oth Bečvář, F oth Belloni, F oth Berthier, B oth Berthoumieux, E oth Billowes, J oth Boccone, V oth Bosnar, D oth Brugger, M oth Calviño, F oth Cano-Ott, D oth Capote, R oth Carrapiço, C oth Cennini, P oth Cerutti, F oth Chiaveri, E oth Chin, M oth Cortés, G oth Cortés-Giraldo, M. A oth Cosentino, L oth Couture, A oth Cox, J oth David, S oth Diakaki, M oth Dillmann, I oth Domingo-Pardo, C oth Dressler, R oth Dridi, W oth Eleftheriadis, C oth Embid-Segura, M oth Ferrant, L oth Ferrari, A oth Finocchiaro, P oth Fraval, K oth Fujii, K oth Furman, W oth Ganesan, S oth García, A. R oth Giubrone, G oth Gómez-Hornillos, M. B oth Gonçalves, I. F oth González-Romero, E oth Goverdovski, A oth Gramegna, F oth Griesmayer, E oth Guerrero, C oth Gunsing, F oth Gurusamy, P oth Haight, R oth Heil, M oth Heinitz, S oth Igashira, M oth Isaev, S oth Jenkins, D. G oth Jericha, E oth Kadi, Y oth Käppeler, F oth Karadimos, D oth Karamanis, D oth Kerveno, M oth Ketlerov, V oth Kivel, N oth Kokkoris, M oth Konovalov, V oth Krtička, M oth Kroll, J oth Lampoudis, C oth Langer, C oth Lederer, C oth Leeb, H oth Losito, R oth Lozano, M oth Manousos, A oth Marganiec, J oth Martínez, T oth Marrone, S oth Massimi, C oth Mastinu, P oth ... oth Enthalten in Physical review / C Woodbury, NY : Inst., 1970 (2015) (DE-627)129508659 (DE-600)209771-0 (DE-576)01491493X 2469-9985 nnns year:2015 http://dx.doi.org/10.1103/PhysRevC.91.024602 Volltext http://hdl.handle.net/2299/15502 GBV_USEFLAG_A SYSFLAG_A GBV_OLC SSG-OLC-PHY SSG-OPC-AST GBV_ILN_21 GBV_ILN_40 GBV_ILN_70 GBV_ILN_2279 UA 6500. AR 2015 |
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Paradela, C ddc 530 rvk UA 6500. misc Nuclear and High Energy Physics High-accuracy determination of the U 238 / U 235 fission cross section ratio up to ≈1 GeV at n-TOF at CERN |
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High-accuracy determination of the U 238 / U 235 fission cross section ratio up to ≈1 GeV at n-TOF at CERN |
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High-accuracy determination of the U 238 / U 235 fission cross section ratio up to ≈1 GeV at n-TOF at CERN |
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high-accuracy determination of the u 238 / u 235 fission cross section ratio up to ≈1 gev at n-tof at cern |
title_auth |
High-accuracy determination of the U 238 / U 235 fission cross section ratio up to ≈1 GeV at n-TOF at CERN |
abstract |
The U238 to U235 fission cross section ratio has been determined at n-TOF up to ≈1 GeV, with two different detection systems, in different geometrical configurations. A total of four datasets has been collected and compared. They are all consistent to each other within the relative systematic uncertainty of 3-4%. The data collected at n-TOF have been suitably combined to yield a unique fission cross section ratio as a function of neutron energy. The result confirms current evaluations up to 200 MeV. Good agreement is also observed with theoretical calculations based on the INCL++/Gemini++ combination up to the highest measured energy. The n-TOF results may help solve a long-standing discrepancy between the two most important experimental datasets available so far above 20 MeV, while extending the neutron energy range for the first time up to ≈1 GeV. Published by the American Physical Society under the terms of the Creative Commons Attribution 3.0 License. Further distribution of this work must maintain attribution to the author(s) and the published article’s title, journal citation, and DOI |
abstractGer |
The U238 to U235 fission cross section ratio has been determined at n-TOF up to ≈1 GeV, with two different detection systems, in different geometrical configurations. A total of four datasets has been collected and compared. They are all consistent to each other within the relative systematic uncertainty of 3-4%. The data collected at n-TOF have been suitably combined to yield a unique fission cross section ratio as a function of neutron energy. The result confirms current evaluations up to 200 MeV. Good agreement is also observed with theoretical calculations based on the INCL++/Gemini++ combination up to the highest measured energy. The n-TOF results may help solve a long-standing discrepancy between the two most important experimental datasets available so far above 20 MeV, while extending the neutron energy range for the first time up to ≈1 GeV. Published by the American Physical Society under the terms of the Creative Commons Attribution 3.0 License. Further distribution of this work must maintain attribution to the author(s) and the published article’s title, journal citation, and DOI |
abstract_unstemmed |
The U238 to U235 fission cross section ratio has been determined at n-TOF up to ≈1 GeV, with two different detection systems, in different geometrical configurations. A total of four datasets has been collected and compared. They are all consistent to each other within the relative systematic uncertainty of 3-4%. The data collected at n-TOF have been suitably combined to yield a unique fission cross section ratio as a function of neutron energy. The result confirms current evaluations up to 200 MeV. Good agreement is also observed with theoretical calculations based on the INCL++/Gemini++ combination up to the highest measured energy. The n-TOF results may help solve a long-standing discrepancy between the two most important experimental datasets available so far above 20 MeV, while extending the neutron energy range for the first time up to ≈1 GeV. Published by the American Physical Society under the terms of the Creative Commons Attribution 3.0 License. Further distribution of this work must maintain attribution to the author(s) and the published article’s title, journal citation, and DOI |
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title_short |
High-accuracy determination of the U 238 / U 235 fission cross section ratio up to ≈1 GeV at n-TOF at CERN |
url |
http://dx.doi.org/10.1103/PhysRevC.91.024602 http://hdl.handle.net/2299/15502 |
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Calviani, M Tarrío, D Leal-Cidoncha, E Leong, L. S Tassan-Got, L Le Naour, C Duran, I Colonna, N Audouin, L Mastromarco, M Lo Meo, S Ventura, A Aerts, G Altstadt, S Álvarez, H Álvarez-Velarde, F Andriamonje, S Andrzejewski, J Badurek, G Barbagallo, M Baumann, P Bécares, V Bečvář, F Belloni, F Berthier, B Berthoumieux, E Billowes, J Boccone, V Bosnar, D Brugger, M Calviño, F Cano-Ott, D Capote, R Carrapiço, C Cennini, P Cerutti, F Chiaveri, E Chin, M Cortés, G Cortés-Giraldo, M. A Cosentino, L Couture, A Cox, J David, S Diakaki, M Dillmann, I Domingo-Pardo, C Dressler, R Dridi, W Eleftheriadis, C Embid-Segura, M Ferrant, L Ferrari, A Finocchiaro, P Fraval, K Fujii, K Furman, W Ganesan, S García, A. R Giubrone, G Gómez-Hornillos, M. B Gonçalves, I. F González-Romero, E Goverdovski, A Gramegna, F Griesmayer, E Guerrero, C Gunsing, F Gurusamy, P Haight, R Heil, M Heinitz, S Igashira, M Isaev, S Jenkins, D. G Jericha, E Kadi, Y Käppeler, F Karadimos, D Karamanis, D Kerveno, M Ketlerov, V Kivel, N Kokkoris, M Konovalov, V Krtička, M Kroll, J Lampoudis, C Langer, C Lederer, C Leeb, H Losito, R Lozano, M Manousos, A Marganiec, J Martínez, T Marrone, S Massimi, C Mastinu, P . |
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doi_str |
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up_date |
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