English

Effect of deuteron breakup on the deuteron-$\Xi$ correlation function

Nuclear Theory 2021-07-07 v2

Abstract

The hadron-deuteron correlation function has attracted many interests as a potential method to access the three-hadron interactions. However, the weakly-bound nature of deuteron has not been considered in the preceding studies. In this study, the breakup effect of deuteron on the deuteron-Ξ\Xi^- (dd-Ξ\Xi^-) correlation function CdΞC_{d\Xi^-} is investigated. The dd-Ξ\Xi^- scattering is described by a nucleon-nucleon-Ξ\Xi three-body reaction model. The continuum-discretized coupled-channels method, which is a fully quantum-mechanical and non-perturbative reaction model, is adopted. CdΞC_{d\Xi^-} turns out to be sensitive to the strong interaction and enhanced by the deuteron breakup effect by 6--8 % for the dd-Ξ\Xi^- relative momentum below about 70 MeV/cc. Low-lying neutron-neutron continuum states are responsible for this enhancement. Within the adopted model, the deuteron breakup effect on CdΞC_{d\Xi^-} is found to be appreciable but not very significant. Except for the enhancement by several percent, studies on CdΞC_{d\Xi^-} without the deuteron breakup effect can be justified.

Keywords

Cite

@article{arxiv.2103.00100,
  title  = {Effect of deuteron breakup on the deuteron-$\Xi$ correlation function},
  author = {Kazuyuki Ogata and Tokuro Fukui and Yuki Kamiya and Akira Ohnishi},
  journal= {arXiv preprint arXiv:2103.00100},
  year   = {2021}
}

Comments

13 pages, 12 figures

R2 v1 2026-06-23T23:33:38.560Z