PaperPanorama

arXiv:2008.04857·v1·Nuclear Experiment

Shape Coexistence at Zero Spin in 64Ni Driven by the Monopole Tensor Interaction

N. Mărginean · D. Little · Y. Tsunoda · S. Leoni · R. V. F. Janssens · B. Fornal · T. Otsuka · C. Michelagnoli · L. Stan · F. C. L. Crespi · C. Costache · R. Lica

Abstract

The low-spin structure of the semimagic 64Ni nucleus has been considerably expanded: combining four experiments, several 0+ and 2+ excited states were identified below 4.5 MeV, and their properties established. The Monte Carlo shell model accounts for the results and unveils an unexpectedly complex landscape of coexisting shapes: a prolate 0+ excitation is located at a surprisingly high energy (3463 keV), with a collective 2+ state 286 keV above it, the first such observation in Ni isotopes. The evolution in excitation energy of the prolate minimum across the neutron N = 40 subshell gap highlights the impact of the monopole interaction and its variation in strength with N.

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