Shape coexistence in the odd-odd nucleus Y98: The role of the g9/2 neutron extruder

W. Urban et al.
Phys. Rev. C 96, 044333 – Published 30 October 2017

Abstract

Excited states in Y98, populated in neutron-induced fission of U235 and in spontaneous fission of Cm248 and Cf252, have been studied by means of γ spectroscopy using the Lohengrin fission-fragment separator at ILL Grenoble and the EXILL, Eurogam2, and Gammasphere Ge arrays. Two new isomers have been found in Y98: a deformed one with T1/2=180(7) ns and a rotational band on top of it, and a spherical one with T1/2=0.45(15)μs, analogous to the 8+ isomer in Y96, corresponding to the (νg7/2,πg9/2)8+ spherical configuration. Using the JYFLTRAP Penning trap, an accurate excitation energy of 465.7(7) keV has been determined for the 2.36-s isomer in Y98. This result and the studies of excited levels in Zr98, populated in β decay of the isomer, indicate a new spin-parity, Iπ=(7)+ for the isomer. The high spin and the decay properties of this isomer suggest the presence of the 9/2+[404] neutron extruder orbital in its structure. This is consistent with the large deformation of the isomer, reported recently. The present work does not provide arguments to support the special role of the νg7/2πg9/2 interaction (the spin-orbit-partner, or SOP, mechanism).

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  • Received 9 May 2017
  • Revised 8 September 2017

DOI:https://doi.org/10.1103/PhysRevC.96.044333

©2017 American Physical Society

Physics Subject Headings (PhySH)

Nuclear Physics

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Vol. 96, Iss. 4 — October 2017

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