English

Tribaryons with lattice QCD and one-boson exchange potentials

High Energy Physics - Phenomenology 2023-11-23 v2 High Energy Physics - Experiment High Energy Physics - Lattice Nuclear Experiment Nuclear Theory

Abstract

Motivated by the existence of two-body hadronic molecules composed of ΩΩ\Omega\Omega, ΩcccΩccc\Omega_{ccc}\Omega_{ccc} and ΩbbbΩbbb\Omega_{bbb}\Omega_{bbb} predicted by lattice QCD simulations, we use the Gaussian expansion method to investigate whether three-body systems composed of ΩΩΩ\Omega\Omega\Omega, ΩcccΩcccΩccc\Omega_{ccc}\Omega_{ccc}\Omega_{ccc} and ΩbbbΩbbbΩbbb\Omega_{bbb}\Omega_{bbb}\Omega_{bbb} can bind with the two-body 1S0^1S_0 interactions provided by lattice QCD. Our results show that none of the three-body systems bind. On the other hand, we find that with the one-boson exchange potentials the ΩΩΩ\Omega\Omega\Omega system develops a bound state, for which the 5S2^5S_2 interaction plays an important role. Our studies support the existence of the 32+\frac{3}{2}^+ ΩΩΩ\Omega\Omega\Omega bound state and the nonexistence of the 32+\frac{3}{2}^+ ΩcccΩcccΩccc\Omega_{ccc}\Omega_{ccc}\Omega_{ccc} and ΩbbbΩbbbΩbbb\Omega_{bbb}\Omega_{bbb}\Omega_{bbb} bound states, due to the suppressed 5S2^5S_2 interactions in heavier systems.

Keywords

Cite

@article{arxiv.2301.00630,
  title  = {Tribaryons with lattice QCD and one-boson exchange potentials},
  author = {Tian-Wei Wu and Si-Qiang Luo and Ming-Zhu Liu and Li-Sheng Geng and Xiang Liu},
  journal= {arXiv preprint arXiv:2301.00630},
  year   = {2023}
}

Comments

6 pages, 2 figures, 4 tables, to appear in PRD as a letter