Three-body structure of $^{19}$B: Finite-range effects in two-neutron halo nuclei
Abstract
The structure and transition strength of B are investigated in a model, triggered by a recent experiment showing that B exhibits a well pronounced two-neutron halo structure. Preliminary analysis of the experimental data was performed by employing contact - interactions, which are known to underestimate the -wave content in other halo nuclei such as Li. In the present work, the three-body hyperspherical formalism with finite-range two-body interactions is used to describe B. In particular, two different finite-range - interactions will be used, as well as a simple central Gaussian potential whose range is progressively reduced. The purpose is to determine the main properties of the nucleus and investigate how they change when using contact-like - potentials. Special attention is also paid to the dependence on the prescription used to account for three-body effects, i.e., a three-body force or a density-dependent - potential. We have found that the three-body model plus finite-range potentials provide a description of B consistent with the experimental data. The results are essentially independent of the short-distance details of the two-body potentials, giving rise to an content of about 55%, clearly larger than the initial estimates. Very little dependence has been found as well on the prescription used for the three-body effects. The total computed strength is compatible with the experimental result, although we slightly overestimate the data around the low-energy peak of the distribution. Finally, we show that a reduction of the - interaction range produces a significant reduction of the -wave contribution, which then should be expected in calculations using contact interactions.
Keywords
Cite
@article{arxiv.2011.04992,
title = {Three-body structure of $^{19}$B: Finite-range effects in two-neutron halo nuclei},
author = {J. Casal and E. Garrido},
journal= {arXiv preprint arXiv:2011.04992},
year = {2020}
}
Comments
6 pages, 3 figures, 1 table. Rapid Communication. Updated version