Nucleon correlations and the structure of Zn413071

The structure of 71Zn was investigated by one-neutron transfer and heavy-ion induced complex (deep-inelastic) reactions using the GRETINA-CHICO2 and the Gammasphere setups, respectively. The observed inversion between the 9/2+ and 1/2− states is explained in terms of the role of neutron pairing corr...

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Veröffentlicht in:Physics letters. B 2017-12, Vol.775, p.271-276
Hauptverfasser: Bottoni, S., Zhu, S., Janssens, R.V.F., Carpenter, M.P., Tsunoda, Y., Otsuka, T., Macchiavelli, A.O., Cline, D., Wu, C.Y., Ayangeakaa, A.D., Bucher, B., Buckner, M.Q., Campbell, C.M., Chiara, C.J., Crawford, H.L., Cromaz, M., David, H.M., Fallon, P., Gade, A., Greene, J.P., Harker, J., Hayes, A.B., Hoffman, C.R., Kay, B.P., Korichi, A., Lauritsen, T., Sethi, J., Seweryniak, D., Walters, W.B., Weisshaar, D., Wiens, A.
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Sprache:eng
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Zusammenfassung:The structure of 71Zn was investigated by one-neutron transfer and heavy-ion induced complex (deep-inelastic) reactions using the GRETINA-CHICO2 and the Gammasphere setups, respectively. The observed inversion between the 9/2+ and 1/2− states is explained in terms of the role of neutron pairing correlations. Non-collective sequences of levels were delineated above the 9/2+ isomeric state. These are interpreted as being associated with a modest oblate deformation in the framework of Monte-Carlo shell-model calculations carried out with the A3DA-m Hamiltonian in the pfg9/2d5/2 valence space. Similarities with the structure of Ni402868 were observed and the shape-coexistence mechanism in the N=40 region of neutron-rich nuclei is discussed in terms of the so-called Type-II shell evolution, with an emphasis on proton–neutron correlations between valence nucleons, especially those involving the shape-driving g9/2 neutron orbital.
ISSN:0370-2693
1873-2445
DOI:10.1016/j.physletb.2017.11.003