English

Reanalysis of the most strange dibaryon within constituent quark models

High Energy Physics - Phenomenology 2020-04-08 v1 Nuclear Theory

Abstract

The most strange dibaryon ΩΩ\Omega\Omega with quantum numbers S=6S=-6, I=0I=0, and JP=0+, 1, 2+, 3J^{P}=0^{+},~1^{-},~2^{+},~3^{-} is reanalyzed in the framework of quark delocalization color screening model (QDCSM) and chiral quark model (ChQM). The ΩΩ\Omega\Omega dibaryon with JP=0+J^{P}=0^{+} is bound, and the one with other quantum numbers JP=1, 2+, 3J^{P}=1^{-},~2^{+},~3^{-} are all unbound in our calculation. The low-energy scattering phase shifts, the scattering length, and the effective range of the ΩΩ\Omega\Omega dibaryon with JP=0+J^{P}=0^{+} also support the existence of such strange dibaryon. This dibaryon is showed to be a shallow bound state in QDCSM, while the binding energy becomes much larger in the ChQM by including the effect of the hidden-color channel coupling. And the scalar nonet meson-exchange in the ChQM also provides more attraction for the ΩΩ\Omega\Omega system. Experimental search for such most strange dibaryon will provide much information for understanding the hadron-hadron interactions in different quark models.

Keywords

Cite

@article{arxiv.1912.11256,
  title  = {Reanalysis of the most strange dibaryon within constituent quark models},
  author = {Hongxia Huang and Xinmei Zhu and Jialun Ping},
  journal= {arXiv preprint arXiv:1912.11256},
  year   = {2020}
}

Comments

8 pages, 3 figures. arXiv admin note: text overlap with arXiv:1507.07124