English

The Octet Meson and Octet Baryon Interaction with strangeness and the $\Lambda(1405)$

Nuclear Theory 2015-12-04 v3

Abstract

The octet meson and baryon interaction with strangeness S=1S=-1 is studied fully relativistically with chiral Lagrangian. In this work, a Bethe-Salpeter equation approach with spectator quasipotential approximation is applied to study the reactions KpMBK^-p\to MB with MB=Kp,Kˉ0n,πΣ+,π0Σ0,π+ΣMB=K^-p,\bar{K}^0n, \pi^-\Sigma^+,\pi^0\Sigma^0, \pi^+\Sigma^- and ηΛ\eta \Lambda with all possible partial waves and theoretical results are comparable with experimental data. It is found that the Weinberg-Tomozawa potential derived from the lowest order chiral Lagrangian only provides the contributions from partial waves with spin-parities JP=1/2+J^P=1/2^+ and 1/21/2^-. Two-pole structure of the Λ(1405)\Lambda(1405) is confirmed with poles at 1383+99i1383+99 i and 1423+14i1423+14i MeV. The lower and higher poles originate from Σπ\Sigma \pi interaction as a resonance and KˉN\bar{K}N interaction as a bound state, respectively.

Keywords

Cite

@article{arxiv.1510.00580,
  title  = {The Octet Meson and Octet Baryon Interaction with strangeness and the $\Lambda(1405)$},
  author = {Jun He and Pei-Liang Lu},
  journal= {arXiv preprint arXiv:1510.00580},
  year   = {2015}
}

Comments

13 pages, 4 figures

R2 v1 2026-06-22T11:11:20.828Z