English

Prediction of possible exotic states in the $\eta \bar{K}K^*$ system

Nuclear Theory 2020-04-21 v3 High Energy Physics - Experiment High Energy Physics - Phenomenology Nuclear Experiment

Abstract

We investigate the ηKˉK\eta \bar{K}K^* three body system in order to look for possible IG(JPC)=0+(1+)I^G(J^{PC})=0^+(1^{-+}) exotic states in the framework of the fixed center approximation to the Faddeev equation. We assume the scattering of η\eta on a clusterized system KˉK\bar{K}K^*, which is known to generate the f1(1285)f_1(1285), or a Kˉ\bar{K} on a clusterized system ηK\eta K^*, which is shown to generate the K1(1270)K_1(1270). In the case of the η\eta-(KˉK)f1(1285)(\bar{K}K^*)_{f_1(1285)} scattering, we find evidence of a bound state IG(JPC)=0+(1+)I^G(J^{PC})=0^+(1^{-+}) below the ηf1(1285)\eta{f_1(1285)} threshold with mass around 1700 MeV and width about 180 MeV. Considering the Kˉ\bar{K}-(ηK)K1(1270)(\eta K^*)_{K_1(1270)} scattering, we obtain a bound state I(JP)=0(1)I(J^{P})=0(1^{-}) just below the KˉK1(1270)\bar{K}{K_1(1270)} threshold with a mass around 1680 MeV and a width about 160 MeV.

Keywords

Cite

@article{arxiv.1906.07340,
  title  = {Prediction of possible exotic states in the $\eta \bar{K}K^*$ system},
  author = {Xu Zhang and Ju-Jun Xie},
  journal= {arXiv preprint arXiv:1906.07340},
  year   = {2020}
}

Comments

7 pages, 8 figures, published version