English

The $\phi p$ bound state in the unitary coupled-channel approximation

High Energy Physics - Phenomenology 2023-05-24 v2

Abstract

The strong attractive interaction of the ϕ\phi meson and the proton is reported by ALICE collaboration recently. The corresponding scattering length f0f_0 is given as Re(f0)=0.85±0.34(stat)±0.14(syst)Re(f_0)=0.85\pm0.34(stat)\pm0.14(syst)fm and Im(f0)=0.16±0.10(stat)±0.09(syst)Im(f_0)=0.16\pm0.10(stat)\pm0.09(syst)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 ϕp\phi p scattering length is calculated based on this approach, and it is found that the experimental value of the ϕp\phi p scattering length can be obtained only if the attractive interaction of the ϕ\phi meson and the proton is taken into account. A significant outcome of such attractive interaction is a two-pole structure in the ϕp\phi p scattering amplitude. One of the pole, locating at (1969i283)(1969-i283)~MeV might correspond to N(1895)1/2N(1895)1/2^- or N(1875)3/2N(1875)3/2^- listed in the review of the Particle Data Group(PDG). The other one, locating at 1949i3{1949-i3}~MeV should be a ϕN\phi N 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

R2 v1 2026-06-24T11:41:20.578Z