English

Role of the possible $\Sigma^*(\frac{1}{2}^-)$ state in the $\Lambda p \to \Lambda p \pi^0$ reaction

Nuclear Theory 2014-11-19 v1 High Energy Physics - Experiment High Energy Physics - Phenomenology Nuclear Experiment

Abstract

The ΛpΛpπ0\Lambda p \to \Lambda p \pi^0 reaction near threshold is studied within an effective Lagrangian method. The production process is described by single-pion and single-kaon exchange. In addition to the role played by the Σ(1385)\Sigma^*(1385) resonance of spin-parity JP=3/2+J^P = 3/2^+, the effects of a newly proposed Σ\Sigma^* (JP=1/2J^P = 1/2^-) state with mass and width around 13801380 MeV and 120120 MeV are investigated. We show that our model leads to a good description of the experimental data on the total cross section of the ΛpΛpπ0\Lambda p \to \Lambda p \pi^0 reaction by including the contributions from the possible Σ(12)\Sigma^*(\frac{1}{2}^-) state. However, the theoretical calculations by considering only the Σ(1385)\Sigma^*(1385) resonance fail to reproduce the experimental data, especially for the enhancement close to the reaction threshold. On the other hand, it is found that the single-pion exchange is dominant. Furthermore, we also demonstrate that the angular distributions provide direct information of this reaction, hence could be useful for the investigation of the existence of the Σ(12)\Sigma^*(\frac{1}{2}^-) state and may be tested by future experiments.

Keywords

Cite

@article{arxiv.1407.7984,
  title  = {Role of the possible $\Sigma^*(\frac{1}{2}^-)$ state in the $\Lambda p \to \Lambda p \pi^0$ reaction},
  author = {Ju-Jun Xie and Jia-Jun Wu and Bing-Song Zou},
  journal= {arXiv preprint arXiv:1407.7984},
  year   = {2014}
}

Comments

8 pages, 5 figures