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Coulomb excitation of the odd-odd isotopes $^{106, 108}$In

The low-lying states in the odd-odd and unstable isotopes In-106,In-108 have been Coulomb excited from the ground state and the first excited isomeric state at the REX-ISOLDE facility at CERN. With the additional data provided here the pi g(9/2)(-1) circle times nu d(5/2) and pi g(9/2)(-1) circle ti...

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Autores principales: Ekstrom, A, Goergen, A, Blazhev, A, Van de Walle, J, Weisshaar, D, Zielinska, M, Tveten, G M, Marsh, B A, Siem, S, Gorska, M, Engeland, T, Hurst, A M, Cederkall, J, Finke, F, Iwanicki, J, Hjorth-Jensen, M, Davinson, T, Eberth, J, Sletten, G, Mierzejewski, J, Reiter, P, Warr, N, Butler, P A, Fahlander, C, Stefanescu, I, Koester, U, Ivanov, O, Wenander, F, Voulot, D
Lenguaje:eng
Publicado: 2010
Materias:
Acceso en línea:https://dx.doi.org/10.1140/epja/i2010-10945-7
http://cds.cern.ch/record/1359353
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author Ekstrom, A
Goergen, A
Blazhev, A
Van de Walle, J
Weisshaar, D
Zielinska, M
Tveten, G M
Marsh, B A
Siem, S
Gorska, M
Engeland, T
Hurst, A M
Cederkall, J
Finke, F
Iwanicki, J
Hjorth-Jensen, M
Davinson, T
Eberth, J
Sletten, G
Mierzejewski, J
Reiter, P
Warr, N
Butler, P A
Fahlander, C
Stefanescu, I
Koester, U
Ivanov, O
Wenander, F
Voulot, D
author_facet Ekstrom, A
Goergen, A
Blazhev, A
Van de Walle, J
Weisshaar, D
Zielinska, M
Tveten, G M
Marsh, B A
Siem, S
Gorska, M
Engeland, T
Hurst, A M
Cederkall, J
Finke, F
Iwanicki, J
Hjorth-Jensen, M
Davinson, T
Eberth, J
Sletten, G
Mierzejewski, J
Reiter, P
Warr, N
Butler, P A
Fahlander, C
Stefanescu, I
Koester, U
Ivanov, O
Wenander, F
Voulot, D
author_sort Ekstrom, A
collection CERN
description The low-lying states in the odd-odd and unstable isotopes In-106,In-108 have been Coulomb excited from the ground state and the first excited isomeric state at the REX-ISOLDE facility at CERN. With the additional data provided here the pi g(9/2)(-1) circle times nu d(5/2) and pi g(9/2)(-1) circle times nu g7/2 multiplets have been re-analyzed and are modified compared to previous results. The observed gamma-ray de-excitation patterns were interpreted within a shell model calculation based on a realistic effective interaction. The agreement between theory and experiment is satisfactory and the calculations reproduce the observed differences in the excitation pattern of the two isotopes. The calculations exclude a 6(+) ground state in In-106. This is in agreement with the conclusions drawn using other techniques. Furthermore, based on the experimental results, it is also concluded that the ordering of the isomeric and ground state in In-108 is inverted compared to the shell model prediction. Limits on B(E2) values have been extracted where possible. A previously unknown low-lying state at 367 keV in In-106 is also reported.
id cern-1359353
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2010
record_format invenio
spelling cern-13593532019-09-30T06:29:59Zdoi:10.1140/epja/i2010-10945-7http://cds.cern.ch/record/1359353engEkstrom, AGoergen, ABlazhev, AVan de Walle, JWeisshaar, DZielinska, MTveten, G MMarsh, B ASiem, SGorska, MEngeland, THurst, A MCederkall, JFinke, FIwanicki, JHjorth-Jensen, MDavinson, TEberth, JSletten, GMierzejewski, JReiter, PWarr, NButler, P AFahlander, CStefanescu, IKoester, UIvanov, OWenander, FVoulot, DCoulomb excitation of the odd-odd isotopes $^{106, 108}$InNuclear Physics - ExperimentThe low-lying states in the odd-odd and unstable isotopes In-106,In-108 have been Coulomb excited from the ground state and the first excited isomeric state at the REX-ISOLDE facility at CERN. With the additional data provided here the pi g(9/2)(-1) circle times nu d(5/2) and pi g(9/2)(-1) circle times nu g7/2 multiplets have been re-analyzed and are modified compared to previous results. The observed gamma-ray de-excitation patterns were interpreted within a shell model calculation based on a realistic effective interaction. The agreement between theory and experiment is satisfactory and the calculations reproduce the observed differences in the excitation pattern of the two isotopes. The calculations exclude a 6(+) ground state in In-106. This is in agreement with the conclusions drawn using other techniques. Furthermore, based on the experimental results, it is also concluded that the ordering of the isomeric and ground state in In-108 is inverted compared to the shell model prediction. Limits on B(E2) values have been extracted where possible. A previously unknown low-lying state at 367 keV in In-106 is also reported.oai:cds.cern.ch:13593532010
spellingShingle Nuclear Physics - Experiment
Ekstrom, A
Goergen, A
Blazhev, A
Van de Walle, J
Weisshaar, D
Zielinska, M
Tveten, G M
Marsh, B A
Siem, S
Gorska, M
Engeland, T
Hurst, A M
Cederkall, J
Finke, F
Iwanicki, J
Hjorth-Jensen, M
Davinson, T
Eberth, J
Sletten, G
Mierzejewski, J
Reiter, P
Warr, N
Butler, P A
Fahlander, C
Stefanescu, I
Koester, U
Ivanov, O
Wenander, F
Voulot, D
Coulomb excitation of the odd-odd isotopes $^{106, 108}$In
title Coulomb excitation of the odd-odd isotopes $^{106, 108}$In
title_full Coulomb excitation of the odd-odd isotopes $^{106, 108}$In
title_fullStr Coulomb excitation of the odd-odd isotopes $^{106, 108}$In
title_full_unstemmed Coulomb excitation of the odd-odd isotopes $^{106, 108}$In
title_short Coulomb excitation of the odd-odd isotopes $^{106, 108}$In
title_sort coulomb excitation of the odd-odd isotopes $^{106, 108}$in
topic Nuclear Physics - Experiment
url https://dx.doi.org/10.1140/epja/i2010-10945-7
http://cds.cern.ch/record/1359353
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