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arXiv:2306.01842·v1·Nuclear Experiment

133In: A Rosetta Stone for decays of r-process nuclei

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🇺🇸

Abstract

The decays from both the ground state and a long-lived isomer of In were studied at the ISOLDE Decay Station (IDS). With a hybrid detection system sensitive to , , and neutron spectroscopy, the comparative partial half-lives (logft) have been measured for all their dominant -decay channels for the first time, including a low-energy Gamow-Teller transition and several First-Forbidden (FF) transitions. Uniquely for such a heavy neutron-rich nucleus, their decays selectively populate only a few isolated neutron unbound states in Sn. Precise energy and branching-ratio measurements of those resonances allow us to benchmark -decay theories at an unprecedented level in this region of the nuclear chart. The results show good agreement with the newly developed large-scale shell model (LSSM) calculations. The experimental findings establish an archetype for the decay of neutron-rich nuclei southeast of Sn and will serve as a guide for future theoretical development aiming to describe accurately the key decays in the rapid-neutron capture (r-) process.

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