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arXiv:2409.15016·v2·Nuclear Experiment

Discovery of a new long-lived isomer in Rh via Penning-trap mass spectrometry

M. Stryjczyk🇫🇮 · A. Jaries🇫🇮 · W. Ryssens🇧🇪 · M. Bender🇫🇷 · A. Kankainen🇫🇮 · T. Eronen🇫🇮 · Z. Ge🇫🇮 · I.D. Moore🇫🇮 · M. Mougeot🇫🇮 · A. Raggio🇫🇮 · J. Ruotsalainen🇫🇮

Abstract

We report on mass measurements of three long-lived states in Rh performed with the JYFLTRAP Penning-trap mass spectrometer: the ground state and two isomers with estimated half-lives of about one second. The used Phase-Imaging Ion-Cyclotron-Resonance technique allowed for the discovery of a so far unknown second long-lived isomer. All three states were produced directly in proton-induced fission on a uranium target, whereas only the isomeric states were populated in the decay of the Ru ground state with spin-parity . We propose spin-parity assignments of for the ground state, and and for the isomers. They resolve the puzzle of anomalous fission yields of this isotope despite the existing literature assigning a low angular momentum to the ground state. The experimental evidence is further supported by a detailed analysis based on mean-field calculations with the BSkG3 model. As for many other nuclei in this mass region, considering triaxial shapes is decisive for the interpretation of low-lying states of this nucleus. The discovery of a new isomer in Rh and our theoretical work challenge the currently adopted spin-parity assignments in this and several other odd-odd neutron-rich Rh isotopes.

Comments: 12 pages, 4 figures

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