English

On the structure observed in the in-flight ${}^{3}\text{He} ( K^{-} , \, \Lambda p ) n$ reaction at J-PARC

High Energy Physics - Phenomenology 2019-12-06 v2 Nuclear Experiment Nuclear Theory

Abstract

A theoretical investigation is done to clarify the origin of the peak structure observed near the KppK^{-} p p threshold in the in-flight 3He(K,Λp)n{}^{3}\text{He} ( K^{-}, \, \Lambda p ) n reaction of the J-PARC E15 experiment, which could be a signal of the lightest kaonic nuclei, that is, the KˉNN(I=1/2)\bar{K} N N (I=1/2) state. For the investigation, we evaluate the Λp\Lambda p invariant mass spectrum assuming two possible scenarios to interpret the experimental peak. One assumes that the Λ(1405)\Lambda (1405) resonance is generated after the emission of an energetic neutron from the absorption of the initial KK^-, not forming a bound state with the remaining proton. This uncorrelated Λ(1405)p\Lambda (1405) p system subsequently decays into the final Λp\Lambda p. The other scenario implies that, after the emission of the energetic neutron, a KˉNN\bar{K} N N bound state is formed, decaying eventually into a Λp\Lambda p pair. Our results show that the experimental signal observed in the in-flight 3He(K,Λp)n{}^{3}\text{He} ( K^{-} , \, \Lambda p ) n reaction at J-PARC is qualitatively well reproduced by the assumption that a KˉNN\bar{K} N N bound state is generated in the reaction, definitely discarding the interpretation in terms of an uncorrelated Λ(1405)p\Lambda (1405) p state.

Keywords

Cite

@article{arxiv.1607.02058,
  title  = {On the structure observed in the in-flight ${}^{3}\text{He} ( K^{-} , \, \Lambda p ) n$ reaction at J-PARC},
  author = {Takayasu Sekihara and Eulogio Oset and Angels Ramos},
  journal= {arXiv preprint arXiv:1607.02058},
  year   = {2019}
}

Comments

27 pages, 18 EPS figures, version accepted for publication in PTEP, discussions on numerical results improved