The $\phi p$ bound state in the unitary coupled-channel approximation
Abstract
The strong attractive interaction of the meson and the proton is reported by ALICE collaboration recently. The corresponding scattering length is given as fm and fm. The fact that the real part is significant in contrast to the imaginary part indicates a dominate role of the elastic scattering, whereas the inelastic process is less important. In this work, such scattering processes are inspected based on a unitary coupled-channel approach inspired by Bethe-Salpeter equation. The scattering length is calculated based on this approach, and it is found that the experimental value of the scattering length can be obtained only if the attractive interaction of the meson and the proton is taken into account. A significant outcome of such attractive interaction is a two-pole structure in the scattering amplitude. One of the pole, locating at ~MeV might correspond to or listed in the review of the Particle Data Group(PDG). The other one, locating at ~MeV should be a bound state, which has no counterpart in the PDG data.
Keywords
Cite
@article{arxiv.2206.02961,
title = {The $\phi p$ bound state in the unitary coupled-channel approximation},
author = {Bao-Xi Sun and Ying-Ying Fan and Qin-Qin Cao},
journal= {arXiv preprint arXiv:2206.02961},
year = {2023}
}
Comments
9 pages, 2 figures and 4 tables. To be published in Communications in Theoretical Physics