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Strangeonium-like hybrids on the lattice

High Energy Physics - Lattice 2021-02-03 v1 High Energy Physics - Experiment High Energy Physics - Phenomenology

Abstract

The strangeonium-like ssˉgs\bar{s}g hybrids are investigated from lattice QCD in the quenched approximation. In the Coulomb gauge, spatially extended operators are constructed for 11^{--} and (0,1,2)+(0,1,2)^{-+} states with the color octet ssˉs\bar{s} component being separated from the chromomagnetic field strength by spatial distances rr, whose matrix elements between the vacuum and the corresponding states are interpreted as Bethe-Salpeter (BS) wave functions. In each of the (1,2)+(1,2)^{-+} channels, the masses and the BS wave functions are reliably derived. The 1+1^{-+} ground state mass is around 2.1-2.2 GeV, and that of 2+2^{-+} is around 2.3-2.4 GeV, while the masses of the first excited states are roughly 1.4 GeV higher. This mass splitting is much larger than the expectation of the phenomenological flux-tube model or constituent gluon model for hybrids, which is usually a few hundred MeV. The BS wave functions with respect to rr show clear radial nodal structures of non-relativistic two-body system, which imply that rr is a meaningful dynamical variable for these hybrids and motivate a color halo picture of hybrids that the color octet ssˉs\bar{s} is surrounded by gluonic degrees of freedom. In the 11^{--} channel, the properties of the lowest two states comply with those of ϕ(1020)\phi(1020) and ϕ(1680)\phi(1680). We have not obtained convincing information relevant to ϕ(2170)\phi(2170) yet, however, we argue that whether ϕ(2170)\phi(2170) is a conventional ssˉs\bar{s} meson or a ssˉgs\bar{s}g hybrid within the color halo scenario, the ratio of partial decay widths Γ(ϕη)\Gamma(\phi \eta) and Γ(ϕη)\Gamma (\phi \eta') observed by BESIII can be understood by the mechanism of hadronic transition of a strangeonium-like meson along with the ηη\eta-\eta' mixing.

Keywords

Cite

@article{arxiv.2007.14893,
  title  = {Strangeonium-like hybrids on the lattice},
  author = {Yunheng Ma and Ying Chen and Ming Gong and Zhaofeng Liu},
  journal= {arXiv preprint arXiv:2007.14893},
  year   = {2021}
}

Comments

10 pages, 6 figures, to be submitted to Chin. Phys. C

R2 v1 2026-06-23T17:29:48.167Z