English

Decay dynamics of the unbound $^{25}$O and $^{26}$O nuclei

Nuclear Theory 2016-03-30 v1 Nuclear Experiment

Abstract

We study the ground and excited resonance states of 26^{26}O with a three-body model of 24^{24}O+n+n taking into account the coupling to the continuum. To this end, we use the new experimental data for the invariant mass spectroscopy of the unbound 25^{25}O and 26^{26}O nuclei, and present an update of three-body model calculations for the two-neutron decay of the 26^{26}O nucleus. With the new model inputs determined with the ground state decay of 26^{26}O, we discuss the di-neurtron correlations and a halo nature of this nucleus, as well as the structure of the excited states. For the energy of the 2+^+ state, we achieve an excellent agreement with the experimental data with this calculation. We show that the 2+^+ state consists predominantly of the (d3/2)2(d_{3/2})^2 configuration, for which the pairing interaction between the valence neutrons slightly decreases its energy from the unperturbed one. We also discuss the structure of excited 0+^+ states of the 26^{26}O nucleus. In particular, we show the existence of an excited 0+^+ state at 3.38 MeV, which is mainly composed of the (f7/2)2(f_{7/2})^2 configuration.

Keywords

Cite

@article{arxiv.1603.03120,
  title  = {Decay dynamics of the unbound $^{25}$O and $^{26}$O nuclei},
  author = {K. Hagino and H. Sagawa},
  journal= {arXiv preprint arXiv:1603.03120},
  year   = {2016}
}

Comments

12 pages, 13 figures. To appear in Phys. Rev. C