Abstract
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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CITATION STYLE
Shand, C. M., Podolyák, Z., Górska, M., Doornenbal, P., Obertelli, A., Nowacki, F., … Xu, Z. Y. (2017). Shell evolution beyond Z = 28 and N = 50: Spectroscopy of 81,82,83,84Zn. Physics Letters, Section B: Nuclear, Elementary Particle and High-Energy Physics, 773, 492–497. https://doi.org/10.1016/j.physletb.2017.09.001
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