English

Bottomonium-like tetraquarks in a chiral quark model

High Energy Physics - Phenomenology 2022-08-17 v1 High Energy Physics - Experiment High Energy Physics - Lattice Nuclear Experiment Nuclear Theory

Abstract

The low-lying bottomonium-like tetraquarks bbˉqqˉb\bar{b}q\bar{q} (q=u,d,s)(q=u,\,d,\,s) with spin-parity JP=0+J^P=0^+, 1+1^+ and 2+2^+, and isospin I=0,1I=0,\,1 or 12\frac{1}{2}, are systematically investigated within the theoretical framework of real- and complex-scaling range of a chiral quark model, which has already been successfully applied in analysis of several multiquark systems. A complete four-body SS-wave function, which includes meson-meson, diquark-antidiquark and K-type arrangements of quarks, along with all possible color configurations are considered. In the bbˉqqˉb\bar{b}q\bar{q} (q=u,d)(q=u,\,d) tetraquark system, we found resonance states of B()Bˉ()B^{(*)} \bar{B}^{(*)}, Υω\Upsilon\omega, Υρ\Upsilon\rho and ηbρ\eta_b \rho nature with all possible I(JP)I(J^P) quantum numbers. Their masses are generally located in the energy range 11.011.311.0-11.3 GeV and their widths are less than 1010 MeV. In addition, extremely narrow resonances, with two-meson strong decay widths less than 1.51.5 MeV, are obtained in both bbˉusˉb\bar{b}u\bar{s} and bbˉssˉb\bar{b}s\bar{s} tetraquark systems. Particularly, four radial excitations of ΥK\Upsilon K^* and ηbK\eta_b K^* are found at 11.1\sim11.1 GeV in JP=0+J^P=0^+, 1+1^+ and 2+2^+ channels of bbˉusˉb\bar{b}u\bar{s} system. One Υ(1S)ϕ(2S)\Upsilon(1S)\phi(2S) resonance state is obtained at 11.2811.28 GeV in the JP=1+J^P=1^+ sector.

Keywords

Cite

@article{arxiv.2204.08556,
  title  = {Bottomonium-like tetraquarks in a chiral quark model},
  author = {Gang Yang and Jialun Ping and Jorge Segovia},
  journal= {arXiv preprint arXiv:2204.08556},
  year   = {2022}
}

Comments

19 pages, 16 tables and 13 figures. arXiv admin note: substantial text overlap with arXiv:2101.04933, arXiv:2109.04311