中文

Double strange hybrid baryon

高能物理 - 唯象学 2026-07-05 v1 高能物理 - 实验 高能物理 - 格点

摘要

We investigate the spectroscopic properties of the double strange hybrid baryon with quark content ssqgssqg within the framework of QCD sum rule. Using an interpolating current with explicit gluonic degrees of freedom, the two-point correlation function is analyzed in terms of two independent Lorentz structures, \slashedq\slashed{q} and II. The operator product expansion is carried out by including vacuum condensates up to dimension ten, and the corresponding sum rules are derived for both structures. By taking the average of the results obtained from the two Lorentz structures, we extract the masses and pole residues of the ground and first excited states. For the ground state, we obtain a mass of M~=(1593.44±130.29) MeV\widetilde{M } = (1593.44\pm 130.29)~ \mathrm{MeV} and a residue of λ~=(2.57±0.40)×103 GeV5\widetilde{\lambda } = (2.57\pm 0.40) \times10^{-3} ~\mathrm{GeV}^5. For the first excited state, the corresponding values are M=(1897.47±124.44) MeVM = (1897.47\pm 124.44)~ \mathrm{MeV} and λ=(2.88±0.62)×103 GeV5\lambda = (2.88\pm 0.62) \times10^{-3} ~\mathrm{GeV}^5. The obtained results provide theoretical predictions for the double strange hybrid baryon spectrum and may be useful for future experimental searches as well as further nonperturbative studies of hybrid hadrons.

引用

@article{arxiv.2607.04237,
  title  = {Double strange hybrid baryon},
  author = {B. Barsbay and K. Azizi and H. Sundu},
  journal= {arXiv preprint arXiv:2607.04237},
  year   = {2026}
}

备注

9 pages, 4 Figures and 2 Tables