Isomer studies in the vicinity of the doubly-magic nucleus Sn-100: Observation of a new low-lying isomeric state in Ag-97

Long-lived isomeric states in Ag-97 and In101-109 were investigated with the FRS Ion Catcher at GSI. In the isotope Ag-97, a long-lived (1/2(-)) isomeric state was discovered, and its excitation energy was determined to be 618(38) keV. This is simultaneously the first discovery of a nuclear isomeric...

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Veröffentlicht in:Physics letters. B 2020-03, Vol.802, Article 135200
Hauptverfasser: Hornung, Christine, Amanbayev, Daler, Dedes, Irene, Kripko-Koncz, Gabriella, Miskun, Ivan, Shimizu, Noritaka, San Andres, Samuel Ayet, Bergmann, Julian, Dickel, Timo, Dudek, Jerzy, Ebert, Jens, Geissel, Hans, Gorska, Magdalena, Grawe, Hubert, Greiner, Florian, Haettner, Emma, Otsuka, Takaharu, Plass, Wolfgang R., Purushothaman, Sivaji, Rink, Ann-Kathrin, Scheidenberger, Christoph, Weick, Helmut, Bagchi, Soumya, Blazhev, Andrey, Charviakova, Olga, Curien, Dominique, Finlay, Andrew, Kaur, Satbir, Lippert, Wayne, Otto, Jan-Hendrik, Patyk, Zygmunt, Pietri, Stephane, Tanaka, Yoshiki K., Tsunoda, Yusuke, Winfield, John S.
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Sprache:eng
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Zusammenfassung:Long-lived isomeric states in Ag-97 and In101-109 were investigated with the FRS Ion Catcher at GSI. In the isotope Ag-97, a long-lived (1/2(-)) isomeric state was discovered, and its excitation energy was determined to be 618(38) keV. This is simultaneously the first discovery of a nuclear isomeric state by multiple-reflection time-of-flight mass spectrometry. The measured excitation energies were compared to large-scale shell-model calculations, which indicated the importance of core excitation around Sn-100. Furthermore, advanced mean-field calculations for the Ag-97 nucleus and relevant neighboring nuclei were performed, which have contributed to a better understanding of the repetitive appearance of certain isomeric structures in neighboring nuclei, and which have supported the discovery of the isomeric state in Ag-97 in a global shell-evolution scheme. (C) 2020 The Author(s). Published by Elsevier B.V.
ISSN:0370-2693
1873-2445
DOI:10.1016/j.physletb.2020.135200