English

Mass spectra, wave functions and mixing effects of the $(bcq)$ baryon

High Energy Physics - Phenomenology 2022-01-25 v1 High Energy Physics - Experiment High Energy Physics - Lattice

Abstract

Mass spectra and wave functions of the JP=12+J^P=\frac{1}{2}^+ (bcq)(bcq) baryons are calculated by the relativistic Bethe-Salpeter equation\,(BSE) with considering the mixing effects between the 1+1^+ and 0+0^+ (bc)(bc)-diquarks inside. Based on the diquark picture, the three-body problem of baryons is transformed into two two-body problems. The BSE and wave functions of the 0+0^+ diquark are given, and then solved numerically to obtain the effective mass spectra and form factors. Also we present the wave functions at zero point for the (bc)(bc)-diquark. Considering the obtained diquark form factors, the (bcq)(bcq) baryons are then described by the BSE as the bound state of a diquark and a light quark, where the interaction kernel includes the inner transitions between the 0+0^+ and 1+1^+ diquarks. The general wave function of the 12+\frac{1}{2}^+ (bcq)(bcq) baryons is constructed and solved to obtain the corresponding mass spectra. Especially, by using the obtained wave functions, the mixing effects between Ξbc(Ωbc)\Xi_{bc}(\Omega_{bc}) and Ξbc(Ωbc)\Xi_{bc}'(\Omega'_{bc}) in ground states are computed and determined to be small ( ⁣1%\sim \!1\%). The numerical results indicate that it is a good choice to take Ξbc\Xi_{bc} and Ξbc\Xi'_{bc} as the baryon states with the inside (bc)(bc)-diquarks occupying the definite spin.

Keywords

Cite

@article{arxiv.2112.10966,
  title  = {Mass spectra, wave functions and mixing effects of the $(bcq)$ baryon},
  author = {Qiang Li and Chao-Hsi Chang and Si-Xue Qin and Guo-Li Wang},
  journal= {arXiv preprint arXiv:2112.10966},
  year   = {2022}
}

Comments

26 pages, 15 figures