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Indirect measurements of neutron-induced reaction cross sections at heavy-ion storage rings

Neutron-induced reaction cross sections of unstable nuclei are essential for understanding the synthesis of heavy elements in stars and for applications in nuclear technology. However, their measurement is very complicated due to the radioactivity of the targets involved. We propose to circumvent th...

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Main Authors: Sguazzin, M., Jurado, B., Pibernat, J., Swartz, J. A., Grieser, M., Glorius, J., Litvinov, Yu. A., Reifarth, R., Blaum, K., Alfaurt, P., Ascher, P., Audouin, L., Berthelot, C., Blank, B., Bruckner, B., Dellmann, S., Dillmann, I., Domingo-Pardo, C., Dupuis, M., Erbacher, P., Flayol, M., Forstner, O., Freire-Fernández, D., Gerbaux, M., Giovinazzo, J., Grévy, S., Griffin, C. J., Gumberidze, A., Heil, S., Heinz, A., Kurtulgil, D., Leckenby, G., Litvinov, S., Lorentz, B., Méot, V., Michaud, J., Perard, S., Petridis, N., Popp, U., Ramos, D., Roche, M., Sanjari, M.S., Sidhu, R.S., Spillmann, U., Steck, M., Stöhlker, Th, Thomas, B., Thulliez, L., Versteegen, M.
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creator Sguazzin, M.
Jurado, B.
Pibernat, J.
Swartz, J. A.
Grieser, M.
Glorius, J.
Litvinov, Yu. A.
Reifarth, R.
Blaum, K.
Alfaurt, P.
Ascher, P.
Audouin, L.
Berthelot, C.
Blank, B.
Bruckner, B.
Dellmann, S.
Dillmann, I.
Domingo-Pardo, C.
Dupuis, M.
Erbacher, P.
Flayol, M.
Forstner, O.
Freire-Fernández, D.
Gerbaux, M.
Giovinazzo, J.
Grévy, S.
Griffin, C. J.
Gumberidze, A.
Heil, S.
Heinz, A.
Kurtulgil, D.
Leckenby, G.
Litvinov, S.
Lorentz, B.
Méot, V.
Michaud, J.
Perard, S.
Petridis, N.
Popp, U.
Ramos, D.
Roche, M.
Sanjari, M.S.
Sidhu, R.S.
Spillmann, U.
Steck, M.
Stöhlker, Th
Thomas, B.
Thulliez, L.
Versteegen, M.
description Neutron-induced reaction cross sections of unstable nuclei are essential for understanding the synthesis of heavy elements in stars and for applications in nuclear technology. However, their measurement is very complicated due to the radioactivity of the targets involved. We propose to circumvent this problem by using the surrogate reaction method in inverse kinematics, where the nucleus formed in the neutron- induced reaction of interest is produced by a reaction involving a radioactive heavy-ion beam and a stable, light target nucleus. The probabilities as a function of the compound-nucleus excitation energy for γ -ray emission, neutron emission and fission, which can be measured with the surrogate reaction, are particularly useful to constrain model parameters and to obtain more accurate predictions of the neutron-induced reaction cross sections of interest. Yet, the full development of the surrogate method is hampered by numerous long- standing target issues, which can be solved by combining surrogate reactions with the unique and largely unexplored possibilities at heavy-ion storage rings. In this contribution, we describe the developments we are carrying out to measure for the first time simultaneously γ -ray emission, neutron emission and fission probabilities at the storage rings of the GSI/FAIR facility. In particular, we will present the first results of the proof of principle experiment, which we performed in June 2022 at the Experimental Storage Ring (ESR) of GSI/FAIR.
doi_str_mv 10.1051/epjconf/202328401008
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J.</au><au>Gumberidze, A.</au><au>Heil, S.</au><au>Heinz, A.</au><au>Kurtulgil, D.</au><au>Leckenby, G.</au><au>Litvinov, S.</au><au>Lorentz, B.</au><au>Méot, V.</au><au>Michaud, J.</au><au>Perard, S.</au><au>Petridis, N.</au><au>Popp, U.</au><au>Ramos, D.</au><au>Roche, M.</au><au>Sanjari, M.S.</au><au>Sidhu, R.S.</au><au>Spillmann, U.</au><au>Steck, M.</au><au>Stöhlker, Th</au><au>Thomas, B.</au><au>Thulliez, L.</au><au>Versteegen, M.</au><au>Thompson, I.</au><au>Mattoon, C.M.</au><au>Escher, J.</au><au>Vogt, R.</au><format>book</format><genre>proceeding</genre><ristype>CONF</ristype><atitle>Indirect measurements of neutron-induced reaction cross sections at heavy-ion storage rings</atitle><btitle>15th International Conference on Nuclear Data for Science and Technology (ND2022), Sacramento, online, USA</btitle><date>2023-01-01</date><risdate>2023</risdate><volume>284</volume><spage>1008</spage><pages>1008-</pages><issn>2100-014X</issn><issn>2101-6275</issn><eissn>2100-014X</eissn><abstract>Neutron-induced reaction cross sections of unstable nuclei are essential for understanding the synthesis of heavy elements in stars and for applications in nuclear technology. However, their measurement is very complicated due to the radioactivity of the targets involved. We propose to circumvent this problem by using the surrogate reaction method in inverse kinematics, where the nucleus formed in the neutron- induced reaction of interest is produced by a reaction involving a radioactive heavy-ion beam and a stable, light target nucleus. The probabilities as a function of the compound-nucleus excitation energy for γ -ray emission, neutron emission and fission, which can be measured with the surrogate reaction, are particularly useful to constrain model parameters and to obtain more accurate predictions of the neutron-induced reaction cross sections of interest. Yet, the full development of the surrogate method is hampered by numerous long- standing target issues, which can be solved by combining surrogate reactions with the unique and largely unexplored possibilities at heavy-ion storage rings. In this contribution, we describe the developments we are carrying out to measure for the first time simultaneously γ -ray emission, neutron emission and fission probabilities at the storage rings of the GSI/FAIR facility. In particular, we will present the first results of the proof of principle experiment, which we performed in June 2022 at the Experimental Storage Ring (ESR) of GSI/FAIR.</abstract><cop>Les Ulis</cop><pub>EDP Sciences</pub><doi>10.1051/epjconf/202328401008</doi><oa>free_for_read</oa></addata></record>
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identifier ISSN: 2100-014X
ispartof 15th International Conference on Nuclear Data for Science and Technology (ND2022), Sacramento, online, USA, 2023, Vol.284, p.1008
issn 2100-014X
2101-6275
2100-014X
language eng
recordid cdi_doaj_primary_oai_doaj_org_article_bbf26996a4d54840852054a6a5660257
source Publicly Available Content (ProQuest); Free Full-Text Journals in Chemistry
subjects Cross-sections
Gamma emission
Heavy elements
Heavy ions
Inverse kinematics
Ion beams
Ion storage
Neutron emission
Neutrons
Radioactivity
title Indirect measurements of neutron-induced reaction cross sections at heavy-ion storage rings
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