English

The $X(2239)$ and $\eta(2225)$ as hidden-strange molecular states from $\Lambda\bar{\Lambda}$ interaction

High Energy Physics - Phenomenology 2020-10-16 v2

Abstract

In this work, we propose a possible assignment of the newly observed X(2239)X(2239), as well as the η(2225)\eta(2225), as a molecular state from the interaction of a baryon Λ\Lambda and an antibaryon Λˉ\bar{\Lambda}. With the help of effective Lagrangians, the ΛΛˉ\Lambda\bar{\Lambda} interaction is described within the one-boson-exchange model with η\eta, η\eta', ω\omega, ϕ\phi, and σ\sigma exchanges considered. After inserting the potential kernel into the quasipotential Bethe-Salpeter equation, the bound states from the ΛΛˉ\Lambda\bar{\Lambda} interaction can be studied by searching for the pole of the scattering amplitude. Two loosely bound states with spin parities IG(JPC)=0+(0+)I^G(J^{PC})=0^+(0^{-+}) and 0(1)0^-(1^{--}) appear near the threshold almost with the same parameter. The 0(1)0^-(1^{--}) state can be assigned to the X(2239)X(2239) observed at BESIII, which is very close to the ΛΛˉ\Lambda\bar{\Lambda} threshold. The scalar meson η(2225)\eta(2225) can be interpreted as a 0+(0+)0^+(0^{-+}) state from the ΛΛˉ\Lambda\bar{\Lambda} interaction. The annihilation effect is also discussed through a coupled-channel calculation plus a phenomenological optical potential. It provides large widths to two bound states produced from the ΛΛˉ\Lambda\bar{\Lambda} interaction. The mass of the 11^- state is a little larger than the mass of the 00^- state after including the annihilation effect, which is consistent with our assignment of these two states as X(2239)X(2239) and η(2225)\eta(2225), respectively. The results suggest that further investigation is expected to understand the structures near the ΛΛˉ\Lambda\bar{\Lambda} threshold, such as X(2239)X(2239), η(2225)\eta(2225), and X(2175)X(2175).

Keywords

Cite

@article{arxiv.1911.03706,
  title  = {The $X(2239)$ and $\eta(2225)$ as hidden-strange molecular states from $\Lambda\bar{\Lambda}$ interaction},
  author = {Jun-Tao Zhu and Yi Liu and Dian-Yong Chen and Longyu Jiang and Jun He},
  journal= {arXiv preprint arXiv:1911.03706},
  year   = {2020}
}

Comments

2 figures, 6 pages

R2 v1 2026-06-23T12:10:16.089Z