Half-life systematics across the N=126 shell closure: Role of first-forbidden transitions in the β decay of heavy neutron-rich nuclei

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Abstract

This Letter reports on a systematic study of β-decay half-lives of neutron-rich nuclei around doubly magic Pb208. The lifetimes of the 126-neutron shell isotone Pt204 and the neighboring Ir200-202, Pt203, Au204 are presented together with other 19 half-lives measured during the "stopped beam" campaign of the rare isotope investigations at GSI collaboration. The results constrain the main nuclear theories used in calculations of r-process nucleosynthesis. Predictions based on a statistical macroscopic description of the first-forbidden β strength reveal significant deviations for most of the nuclei with N<126. In contrast, theories including a fully microscopic treatment of allowed and first-forbidden transitions reproduce more satisfactorily the trend in the measured half-lives for the nuclei in this region, where the r-process pathway passes through during β decay back to stability. © 2014 American Physical Society.

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Morales, A. I., Benlliure, J., Kurtukián-Nieto, T., Schmidt, K. H., Verma, S., Regan, P. H., … Woods, P. J. (2014). Half-life systematics across the N=126 shell closure: Role of first-forbidden transitions in the β decay of heavy neutron-rich nuclei. Physical Review Letters, 113(2). https://doi.org/10.1103/PhysRevLett.113.022702

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