English

Further evidence for shape coexistence in $^{79}$Zn$^{m}$ near doubly-magic $^{78}$Ni

Nuclear Experiment 2023-12-05 v1 Nuclear Theory

Abstract

Isomers close to doubly-magic 2878^{78}_{28}Ni50_{50} provide essential information on the shell evolution and shape coexistence near the Z=28{Z=28} and N=50{N=50} double shell closure. We report the excitation energy measurement of the 1/2+1/2^{+} isomer in 3079^{79}_{30}Zn49_{49} through independent high-precision mass measurements with the JYFLTRAP double Penning trap and with the ISOLTRAP Multi-Reflection Time-of-Flight Mass Spectrometer. We unambiguously place the 1/2+1/2^{+} isomer at 942(10) keV, slightly below the 5/2+5/2^+ state at 983(3) keV. With the use of state-of-the-art shell-model diagonalizations, complemented with Discrete Non Orthogonal shell-model calculations which are used here the first time to interpret shape coexistence, we find low-lying deformed intruder states, similar to other N=49{N=49} isotones. The 1/2+1/2^{+} isomer is interpreted as the band-head of a low-lying deformed structure akin to a predicted low-lying deformed band in 80^{80}Zn, and points to shape coexistence in 79,80^{79,80}Zn similar to the one observed in 78^{78}Ni. The results make a strong case for confirming the claim of shape coexistence in this key region of the nuclear chart.

Keywords

Cite

@article{arxiv.2310.16915,
  title  = {Further evidence for shape coexistence in $^{79}$Zn$^{m}$ near doubly-magic $^{78}$Ni},
  author = {L. Nies and L. Canete and D. D. Dao and S. Giraud and A. Kankainen and D. Lunney and F. Nowacki and B. Bastin and M. Stryjczyk and P. Ascher and K. Blaum and R. B. Cakirli and T. Eronen and P. Fischer and M. Flayol and V. Girard Alcindor and A. Herlert and A. Jokinen and A. Khanam and U. Köster and D. Lange and I. D. Moore and M. Müller and M. Mougeot and D. A. Nesterenko and H. Penttilä and C. Petrone and I. Pohjalainen and A. de Roubin and V. Rubchenya and Ch. Schweiger and L. Schweikhard and M. Vilen and J. Äystö},
  journal= {arXiv preprint arXiv:2310.16915},
  year   = {2023}
}

Comments

10 pages, three figures, two tables. Accepted to Phys. Rev. Lett