English

$\sigma$ exchange in the one-boson exchange model involving the ground state octet baryons

High Energy Physics - Phenomenology 2024-05-03 v2 Nuclear Theory

Abstract

Based on the one-boson-exchange framework that the σ\sigma meson serves as an effective parameterization for the correlated scalar-isoscalar ππ\pi\pi interaction, we calculate the coupling constants of the σ\sigma to the 12+\frac{1}{2}^+ ground state light baryon octet B{\mathbb B} by matching the amplitude of BBˉππBˉB{\mathbb B}\bar{{\mathbb B}}\to\pi\pi\to\bar{{\mathbb B}}{\mathbb B} to that of BBˉσBˉB{\mathbb B}\bar{{\mathbb B}}\to\sigma\to\bar{{\mathbb B}}{\mathbb B}. The former is calculated using a dispersion relation, supplemented with chiral perturbation theory results for the BBππ{\mathbb B}{\mathbb B}\pi\pi couplings and the Muskhelishvili-Omn\` es representation for the ππ\pi\pi rescattering. Explicitly, the coupling constants are obtained as gNNσ=8.71.9+1.7g_{NN\sigma}=8.7_{-1.9}^{+1.7}, gΣΣσ=3.51.3+1.8g_{\Sigma\Sigma\sigma}=3.5_{-1.3}^{+1.8}, gΞΞσ=2.51.4+1.5g_{\Xi\Xi\sigma}=2.5_{-1.4}^{+1.5}, and gΛΛσ=6.81.7+1.5g_{\Lambda\Lambda\sigma}=6.8_{-1.7}^{+1.5}. These coupling constants can be used in the one-boson-exchange model calculations of the interaction of light baryons with other hadrons.

Keywords

Cite

@article{arxiv.2312.01013,
  title  = {$\sigma$ exchange in the one-boson exchange model involving the ground state octet baryons},
  author = {Bing Wu and Xiong-Hui Cao and Xiang-Kun Dong and Feng-Kun Guo},
  journal= {arXiv preprint arXiv:2312.01013},
  year   = {2024}
}

Comments

26 pages, 9 figures