N=14and 16 shell gaps in neutron-rich oxygen isotopes

@inproceedings{Stnoiu2004N14and1S,
  title={N=14and 16 shell gaps in neutron-rich oxygen isotopes},
  author={M. Stănoiu and Faisal Azaiez and Zs. Dombr{\'a}di and O. Sorlin and Bryan A. Brown and Marion Belleguic and D{\'o}ra Sohler and M. G. Saint Laurent and M Lopez-jimenez and Yu. E. Penionzhkevich and Gaute Sletten and N. Lynda Achouri and J. C. Ang{\'e}lique and François Becker and Catalin Borcea and Ch. Bourgeois and Annalisa Bracco and J. M. Daugas and Zdeněk Dlouh{\'y} and Corinne Donzaud and Jean Duprat and Zs. F{\"u}l{\"o}p and Dominique Guillemaud-Mueller and St{\'e}phane Gr{\'e}vy and Firas Ibrahim and A. Kerek and Attila Krasznahorkay and Marek Lewitowicz and S. Leenhardt and Sergei Lukyanov and Patrick Mayet and S. Mandal and Heleen van der Marel and Wolfgang Mittig and Johann Mrazek and Florin Negoita and F. De Oliveira-Santos and Zs. Podol{\'y}ak and F. Pougheon and M. G. Porquet and Patricia Roussel-Chomaz and Herv{\'e} Savajols and Yu. G. Sobolev and C. Stodel and Judit Tim{\'a}r and Arthur Yamamoto},
  year={2004}
}
In-beam gamma-ray spectroscopy using fragmentation reactions of both stable and radioactive beams has been performed in order to study the structure of excited states in neutron-rich oxygen isotopes with masses ranging from A=20 to 24. For the produced fragments, gamma-ray energies, intensities, and gamma-gamma coincidences have been measured. Based on this information new level schemes are proposed for O-21,O-22 up to the neutron separation energy. The nonobservation of any gamma-decay branch… CONTINUE READING

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