English

Properties of the tensor state $bc\overline{b}\overline{c}$

High Energy Physics - Phenomenology 2025-04-14 v3 High Energy Physics - Experiment High Energy Physics - Lattice

Abstract

Spectroscopic parameters and decays of the exotic tensor meson TT with content bcbcbc \overline{b}\overline{c} are explored in the context of the diquark-antidiquark model. We treat it as a state built of axial-vector diquark bTCγμcb^{T}C\gamma _{\mu }c and antidiquark bγνCcT\overline{b}\gamma _{\nu }C \overline{c}^{T}, where CC is the charge conjugation matrix. The mass mm and current coupling Λ\Lambda of this tetraquark are extracted from two-point sum rules. Our result for m=(12.70±0.09) GeVm=(12.70 \pm 0.09)~\mathrm{GeV} proves that TT is unstable against strong dissociations to two-meson final states. Its dominant decay channels are processes TJ/ψΥT \to J/\psi \Upsilon , ηbηc \eta_{b}\eta _{c}, and Bc()+Bc()B_{c}^{(\ast) +}B_{c}^{(\ast) -}. Kinematically allowed transformations of TT include also decays TD()+D()T\rightarrow D^{(\ast )+}D^{(\ast )-} and D()0D()0D^{(\ast )0}\overline{D}^{(\ast )0}, which are generated by bbb\overline{b} annihilation inside of TT. The full width of T T is estimated by considering all of these channels. Their partial widths are calculated by invoking methods of three-point sum rule approach which are required to evaluate strong couplings at corresponding tetraquark-meson-meson vertices. Our predictions for the mass and width ΓT=(117.4±15.9) MeV \Gamma_{T}=(117.4 \pm 15.9)~ \mathrm{MeV} of the tensor state TT provide useful information for experimental studies of fully heavy four-quark exotic structures.

Keywords

Cite

@article{arxiv.2410.22439,
  title  = {Properties of the tensor state $bc\overline{b}\overline{c}$},
  author = {S. S. Agaev and K. Azizi and H. Sundu},
  journal= {arXiv preprint arXiv:2410.22439},
  year   = {2025}
}

Comments

14 Pages and 5 Figures