Beta-delayed neutron spectroscopy of $^{133}$In

Z. Y. Xu,M. Madurga,R. Grzywacz, T. T. King,A. Algora,A. N. Andreyev, J. Benito, T. Berry, M. J. G. Borge, C. Costache,H. De Witte,A. Fijalkowska,L. M. Fraile, H. O. U. Fynbo, A. Gottardo, C. Halverson,L. J. Harkness-Brennan,J. Heideman, M. Huyse, A. Illana,Ł. Janiak, D. S. Judson,A. Korgul, T. Kurtukian-Nieto, I. Lazarus, R. Lică,R. Lozeva, N. Marginean, R. Marginean,C. Mazzocchi,C. Mihai,R. E. Mihai,A. I. Morales,R. D. Page,J. Pakarinen, M. Piersa-Siłkowska,Zs. Podolyák,P. Sarriguren, M. Singh,Ch. Sotty, M. Stepaniuk,O. Tengblad, A. Turturica,P. Van Duppen,V. Vedia,S. Viñals, N. Warr,R. Yokoyama,C. X. Yuan

arxiv(2023)

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摘要
The decay properties of $^{133}$In were studied in detail at the ISOLDE Decay Station (IDS). The implementation of the Resonance Ionization Laser Ion Source (RILIS) allowed separate measurements of its $9/2^+$ ground state ($^{133g}$In) and $1/2^-$ isomer ($^{133m}$In). With the use of $\beta$-delayed neutron and $\gamma$ spectroscopy, the decay strengths above the neutron separation energy were quantified in this neutron-rich nucleus for the first time. The allowed Gamow-Teller transition $9/2^+\rightarrow7/2^+$ was located at 5.92 MeV in the $^{133g}$In decay with a logft = 4.7(1). In addition, several neutron-unbound states were populated at lower excitation energies by the First-Forbidden decays of $^{133g,m}$In. We assigned spins and parities to those neutron-unbound states based on the $\beta$-decay selection rules, the logft values, and systematics.
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neutron spectroscopy,beta-delayed
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