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Spectroscopy and excited-state g factors in weakly collective Cd 111: Confronting collective and microscopic models

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Coombes, Ben
Stuchbery, Andrew
Blazhev, A.
Grawe, H.
Reed, Matthew
Akber, Aqeel
Dowie, Jackson
Gerathy, Matthew
Gray, Timothy
Kibedi, Tibor

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American Physical Society

Abstract

Background: The even cadmium isotopes near the neutron midshell have long been considered among the best examples of vibrational nuclei. However, the vibrational nature of these nuclei has been questioned based on E2 transition rates that are not consistent with vibrational excitations. In the neighboring odd-mass nuclei, the g factors of the low-excitation collective states have been shown to be more consistent with a deformed rotational core than a vibrational core. Moving beyond the comparison of vibrational versus rotational models, recent advances in computational power have made shell-model calculations feasible for Cd isotopes. These calculations may give insights into the emergence and nature of collectivity in the Cd isotopes.

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Physical Review C: Nuclear Physics

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Open Access

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