English

Investigation of $^{23}$N in a three-body model

Nuclear Theory 2018-04-23 v1

Abstract

The neutron-drip-line nucleus 23^{23}N is investigated in a three-body model consisting of a 21^{21}N core and two valence neutrons. By solving the Faddeev equations with the realistic neutron-neutron potentials and the neutron-core potentials, we calculate the ground state properties of 23^{23}N and also find that there is a new excited state with two-neutron separation energy at about 0.18 MeV. The properties, such as the two-neutron separation energies, are obtained with a good agreement with experiments. By calculating the root-mean-square matter radii, the average distances between the valence neutrons, and the average distances between the core and the center-of-mass of the neutron pair, we show that the excited state of 23^{23}N has a clear halo structure. The correlation density distributions of the three-body system are also calculated to analyze its geometric configuration. At last, we find that the excited state of 23^{23}N has a very small binding energy, a large radius and distribution, and a triangular shape similar with the ground state. These roperties of the excited state indicate that it can be an Efimov state.

Keywords

Cite

@article{arxiv.1501.00071,
  title  = {Investigation of $^{23}$N in a three-body model},
  author = {Liuyang Zhang and Zhongzhou Ren and Mengjiao Lyu and Chen Ji},
  journal= {arXiv preprint arXiv:1501.00071},
  year   = {2018}
}

Comments

14 pages, 4 figures