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Microscopic structure of coexisting 0+ states in Ni 68 probed via two-neutron transfer

Authors :
Flavigny, F.
Elseviers, J.
Andreyev, A. N.
Bauer, C.
Bildstein, V.
Blazhev, A.
Brown, B. A.
De Witte, H.
Diriken, J.
Fedosseev, V. N.
Franchoo, S.
Gernhäuser, R.
Huyse, M.
Ilieva, S.
Klupp, S.
Kröll, Th.
Lutter, R.
Marsh, B. A.
Mücher, D.
Nowak, K.
Otsuka, T.
Pakarinen, J.
Patronis, N.
Raabe, R.
Recchia, F.
Reiter, P.
Roger, T.
Sambi, S.
Seidlitz, M.
Seliverstov, M. D.
Siebeck, B.
Tsunoda, Y.
Van Duppen, P.
Vermeulen, M.
Von Schmid, M.
Voulot, D.
Warr, N.
Wenander, F.
Wimmer, K.
Publication Year :
2019

Abstract

The structure of low-spin states originating from shape-coexisting configurations in Ni284068 was directly probed via the two-neutron transfer reaction Ni66(t,p)Ni68 in inverse kinematics using a radioactive ion beam on a radioactive target. The direct feeding to the first excited 0+ state was measured for center-of-mass angles 4-16 and amounts to an integral of 4.2(16)% relative to the ground state. The observed difference in feeding of the 0+ states is explained by the transfer of neutrons, mainly in the pf shell below N=40 for the ground state, and across N=40 in the g9/2 orbital for the 02+, based on second-order distorted-wave Born approximation calculations combined with state-of-the-art shell-model two-nucleon amplitudes. However, the direct feeding to the 21+ state [29(3)%] is incompatible with these calculations.

Details

Language :
English
ISSN :
24699993
Database :
OpenAIRE
Accession number :
edsair.dedup.wf.001..74afe2e04753d247a790d7f18b5ea830