Competition between Allowed and First-Forbidden β Decay: The Case of Hg 208 → Tl 208

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Abstract

The β decay of Hg208 into the one-proton hole, one neutron-particle Tl81208127 nucleus was investigated at CERN-ISOLDE. Shell-model calculations describe well the level scheme deduced, validating the proton-neutron interactions used, with implications for the whole of the N>126, Z<82 quadrant of neutron-rich nuclei. While both negative and positive parity states with spin 0 and 1 are expected within the Qβ window, only three negative parity states are populated directly in the β decay. The data provide a unique test of the competition between allowed Gamow-Teller and Fermi, and first-forbidden β decays, essential for the understanding of the nucleosynthesis of heavy nuclei in the rapid neutron capture process. Furthermore, the observation of the parity changing 0+→0-β decay where the daughter state is core excited is unique, and can provide information on mesonic corrections of effective operators.

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Carroll, R. J., Podolyák, Z., Berry, T., Grawe, H., Alexander, T., Andreyev, A. N., … De Witte, H. (2020). Competition between Allowed and First-Forbidden β Decay: The Case of Hg 208 → Tl 208. Physical Review Letters, 125(19). https://doi.org/10.1103/PhysRevLett.125.192501

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