Shape coexistence in 94Zr from a model-independent analysis
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Elsevier B.V.
Abstract
Low-lying states of 94Zr were investigated via low-energy multi-step Coulomb excitation. From the measured γ -ray yields, 16 reduced E2 transition probabilities between low-spin states were determined, together with the spectroscopic quadrupole moments of the 21,2+ states. Based on this information, for the first time in the Zr isotopic chain, the shapes of the 01,2+ states including their deformation softness were inferred in a model-independent way using the quadrupole sum rules approach. The ground state of 94Zr possesses a rather diffuse shape associated with a spherical configuration, while the 02+ state is triaxial tending towards oblate and more strongly deformed. The observed features of shape coexistence in 94Zr are consistent with both Monte-Carlo shell-model predictions and IBM-CM calculations, and provide model-independent constraints on the shape character assigned in the IBM-CM to the intruder configuration in 92–96Zr.
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Marchini, N., Rocchini, M., Zielińska, M., Nannini, A., Doherty, D.T., Gavrielov, N., Garrett, P.E., Hadyńska-Klȩk, K., Goasduff, A., Testov, D. and Bakes, S.D., 2026. Shape Coexistence in 94Zr from a Model-Independent Analysis. Physics Letters B, p.140668.