English

$\Xi(1690)^-$ resonance production via $K^-p \to K^+K^-\Lambda$

High Energy Physics - Phenomenology 2020-01-08 v1 High Energy Physics - Experiment Nuclear Theory

Abstract

In this talk, we investigate Ξ(1690)\Xi(1690)^- production from the KpK+KΛK^-p\to K^+K^-\Lambda reaction wit the effective Lagrangian method and consider the ss- and uu-channel Σ/Λ\Sigma/\Lambda ground states and resonances for the Ξ\Xi-pole contributions, in addition to the ss-channel Λ\Lambda, uu-channel nucleon pole, and tt-channel KK^--exchange for the ϕ\phi-pole contributions. The Ξ\Xi-pole includes Ξ(1320)\Xi(1320), Ξ(1535)\Xi(1535), Ξ(1690)(Jp=1/2)\Xi(1690)(J^p=1/2^-), and Ξ(1820)(Jp=3/2)\Xi(1820)(J^p=3/2^-). We compute the Dalitz plot density of (d2σ/dMK+KdMKΛ(d^2\sigma/dM_{K^+K^-}dM_{K^-\Lambda} at 4.2 GeV/c/c) and the total cross sections for the KpK+KΛK^-p\to K^+K^-\Lambda. Employing the parameters from the fit, we present the cross sections for the two-body KpK+Ξ(1690)K^-p\to K^+\Xi(1690)^- reaction near the threshold. We also demonstrate that the Dalitz plot analysis for pK=1.9152.065p_{K^-}=1.915 \sim2.065 GeV/c makes us to explore direct information for Ξ(1690)\Xi(1690)^- production, which can be done by future KK^- beam experiments.

Keywords

Cite

@article{arxiv.1905.00666,
  title  = {$\Xi(1690)^-$ resonance production via $K^-p \to K^+K^-\Lambda$},
  author = {Seung-il Nam and Jung Keun Ahn},
  journal= {arXiv preprint arXiv:1905.00666},
  year   = {2020}
}

Comments

5 pages, 3 figures, proceedings for QNP2019