Study of $\Lambda p$ and $\bar{\Lambda} p$ scatterings via quasipotential Bethe-Salpeter equation
Abstract
Motivated by recent BESIII measurements of the and 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 and channels. For the reaction, the total cross sections from threshold up to are well reproduced. A mild enhancement near the threshold is attributed to coupled-channel dynamics. Using parameters constrained by the total cross section data, our model also predicts differential cross sections at , which exhibit weak angular dependence, consistent with experimental observations. Partial-wave analysis indicates that the partial wave dominates over the entire energy range, while the wave plays a significant role near threshold. For the reaction, our predicted total cross sections show good agreement with the BESIII data. The 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 interaction.
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