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Spectroscopy of neutron deficient 65Ge
Authors:D. Sohler  Zs. Dombrádi  S. Brant  J. Cederkäll  M. Lipoglavšek  M. Palacz  V. Paar  J. Persson  A. Atac̣  C. Fahlander  H. Grawe  A. Johnson  A. Kerek  W. Klamra  J. Kownacki  A. Likar  L. O. Norlin  J. Nyberg  R. Schubart  D. Seweryniak  G. de Angelis  P. Bednarczyk  D. Foltescu  M. Fayez-Hassan  D. Jerrestam  S. Juutinen  E. Mäkelä  B. M. Nyakó  M. de Poli  H. A. Roth  T. Shizuma  Ö. Skeppstedt  G. Sletten  S. Törmänen
Affiliation:1. Institute of Nuclear Research, Debrecen, Hungary
2. Department of Physics, Faculty of Science, University of Zagreb, Zagreb, Croatia
3. Department of Physics, Royal Institute of Technology, Stockholm, Sweden
4. The Svedberg Laboratory, Uppsala University, Uppsala, Sweden
5. J. Stefan Institute, Ljubljana, Slovenia
6. Soltan Institute for Nuclear Physics, ?wierk, Poland
7. Department of Radiation Sciences, Uppsala University, Uppsala, Sweden
8. GSI, Darmstadt, Germany
9. Heavy Ion Laboratory, University of Warsaw, Warsaw, Poland
10. Institute of Experimental Physics, University of Warsaw, Warsaw, Poland
11. Laboratori Nazionali di Lenaro, Padova, Italy
12. Chalmers University of Technology, Gothenburg, Sweden
13. Department of Neutron Research, Uppsala University, Nyk?ping, Sweden
14. Department of Physics, University of Jyv?skyl?, Jyv?skyl?, Finland
15. Niels Bohr Institute, University of Copenhagen, Copenhagen, Denmark
Abstract:Excited states of 65Ge were populated via the 12C + 58Ni (261 MeV) reaction using the NORDBALL detector array equipped with charged-particle and neutron detector systems for reaction channel separation. On the basis of γγ-coincidence relations and angular distribution ratios a significantly extended level scheme was constructed up to E x = 9 MeV and J π = (33/2?). The low-energy states of the nucleus are discussed in the framework of the interacting boson-fermion model.
Keywords:
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