Effect of deuteron breakup on the deuteron-$\Xi$ correlation function
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- (-) correlation function is investigated. The - scattering is described by a nucleon-nucleon- three-body reaction model. The continuum-discretized coupled-channels method, which is a fully quantum-mechanical and non-perturbative reaction model, is adopted. turns out to be sensitive to the strong interaction and enhanced by the deuteron breakup effect by 6--8 % for the - relative momentum below about 70 MeV/. Low-lying neutron-neutron continuum states are responsible for this enhancement. Within the adopted model, the deuteron breakup effect on is found to be appreciable but not very significant. Except for the enhancement by several percent, studies on 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