English

Radially Excited States of $\eta_c$

High Energy Physics - Phenomenology 2015-05-20 v1

Abstract

In the framework of chiral quark model, the mass spectrum of ηc(ns)(n=1,...,6)\eta_c(ns) (n=1,...,6) is studied with Gaussian expansion method. With the wave functions obtained in the study of mass spectrum, the open flavor two-body strong decay widths are calculated by using 3P0^3P_0 model. The results show that the masses of ηc(1S)\eta_c(1S) and ηc(2S)\eta_c(2S) are consistent with the experimental data. The explanation of X(3940) as ηc(3S)\eta_c(3S) is disfavored for X(3940) is a narrow state, Γ=3715+26±8\Gamma=37^{+26}_{-15} \pm 8 MeV, while the open flavor two-body strong decay width of ηc(3S)\eta_c(3S) is about 200 MeV in our calculation. Although the mass of X(4160) is about 100 MeV less than that of ηc(4S)\eta_c(4S), the assignment of X(4160) as ηc(4S)\eta_c(4S) can not be excluded because the open flavor two-body strong decay width of ηc(4S)\eta_c(4S) is consistent with the experimental value of X(4160) and the branching ratios of ηc(4S)\eta_c(4S) are compatible with that of X(4160), and the mass of ηc(4S)\eta_c(4S) can be shifted downwards by taking into account the coupling effect of the open charm channels. There are still no good candidates to ηc(5S)\eta_c(5S) and ηc(6S)\eta_c(6S).

Keywords

Cite

@article{arxiv.1412.7068,
  title  = {Radially Excited States of $\eta_c$},
  author = {Hui Wang and Zhaozhao Yan and Jialun Ping},
  journal= {arXiv preprint arXiv:1412.7068},
  year   = {2015}
}

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5 pages