English

Study of $\Lambda p$ and $\bar{\Lambda} p$ scatterings via quasipotential Bethe-Salpeter equation

High Energy Physics - Phenomenology 2025-07-25 v1 Nuclear Theory

Abstract

Motivated by recent BESIII measurements of the ΛpΛp\Lambda p \to \Lambda p and ΛˉpΛˉp\bar{\Lambda} p \to \bar{\Lambda} p scattering processes, we investigate these reactions within the framework of the quasipotential Bethe-Salpeter equation using an effective Lagrangian approach. The interaction potentials are constructed via a one-boson-exchange model incorporating pseudoscalar, scalar, and vector meson exchanges, along with coupled-channel effects from the ΣN\Sigma N and ΣˉN\bar{\Sigma} N channels. For the ΛpΛp\Lambda p \to \Lambda p reaction, the total cross sections from threshold up to s=2.5 GeV\sqrt{s} = 2.5~\text{GeV} are well reproduced. A mild enhancement near the ΣN\Sigma N threshold is attributed to coupled-channel dynamics. Using parameters constrained by the total cross section data, our model also predicts differential cross sections at s=2.24 GeV\sqrt{s} = 2.24~\text{GeV}, which exhibit weak angular dependence, consistent with experimental observations. Partial-wave analysis indicates that the 1+1^+ partial wave dominates over the entire energy range, while the 0+0^+ wave plays a significant role near threshold. For the ΛˉpΛˉp\bar{\Lambda} p \to \bar{\Lambda} p reaction, our predicted total cross sections show good agreement with the BESIII data. The 11^- partial wave is found to dominate in most of the energy region. Notably, the calculated differential cross sections exhibit a strong forward peaking behavior, consistent with experimental findings and understood as resulting from constructive interference among various partial waves. This forward-peaked angular distribution persists across a range of energies, highlighting the distinct dynamics of the Λˉp\bar{\Lambda} p interaction.

Keywords

Cite

@article{arxiv.2507.18415,
  title  = {Study of $\Lambda p$ and $\bar{\Lambda} p$ scatterings via quasipotential Bethe-Salpeter equation},
  author = {Yaning Chen and Jun He},
  journal= {arXiv preprint arXiv:2507.18415},
  year   = {2025}
}

Comments

8 pages, 6 figures

R2 v1 2026-07-01T04:17:01.076Z