Shell evolution beyond Z = 28 and N = 50: Spectroscopy of 81,82,83,84Zn

C.M. Shand,Zs. Podolyák, M. Górska,P. Doornenbal, A. Obertelli,F. Nowacki, T. Otsuka,K. Sieja, J.A. Tostevin,Y. Tsunoda, G. Authelet,H. Baba, D. Calvet, A. Château, S. Chen, A. Corsi,A. Delbart,J.M. Gheller, A. Giganon, A. Gillibert

Physics Letters B(2017)

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摘要
We report on the measurement of new low-lying states in the neutron-rich 81,82,83,84Zn nuclei via in-beam γ-ray spectroscopy. These include the 41+→21+ transition in 82Zn, the 21+→0g.s.+ and 41+→21+ transitions in 84Zn, and low-lying states in 81,83Zn were observed for the first time. The reduced E(21+) energies and increased E(41+)/E(2+1) ratios at N=52, 54 compared to those in 80Zn attest that the magicity is confined to the neutron number N=50 only. The deduced level schemes are compared to three state-of-the-art shell model calculations and a good agreement is observed with all three calculations. The newly observed 2+ and 4+ levels in 84Zn suggest the onset of deformation towards heavier Zn isotopes, which has been incorporated by taking into account the upper sdg orbitals in the Ni78-II and the PFSDG-U models.
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