English

Stable scalar tetraquark $T_{bb;\bar{u}\bar{d}}^{-}$

High Energy Physics - Phenomenology 2020-08-26 v4 High Energy Physics - Experiment High Energy Physics - Lattice

Abstract

The mass and coupling of the scalar tetraquark Tbb;udT_{bb;\overline{u}\overline{d }}^{-} (hereafter Tb:dT_{b:\overline{d}}^{-} ) are calculated in the context of the QCD two-point sum rule method. In computations we take into account effects of various quark, gluon and mixed condensates up to dimension ten. The result obtained for the mass of this state m=(10135±240) MeVm=(10135\pm 240)~\mathrm{MeV} demonstrates that it is stable against the strong and electromagnetic decays. We also explore the dominant semileptonic Tb:dZ~bc;uˉdˉ0lνlT_{b:\overline{d}}^{-} \to \widetilde{Z}_{bc;\bar{u}\bar{d}}^{0}l\overline{\nu }_{l} and nonleptonic decays Tb:dZ~bc;uˉdˉ0MT_{b:\overline{d}}^{-} \to \widetilde{Z}_{bc;\bar{u}\bar{ d}}^{0}M, where Z~bc;uˉdˉ0\widetilde{Z}_{bc;\bar{u}\bar{d}}^{0} is the scalar tetraquark composed of color-sextet diquark and antidiquark, and MM is one of the final-state pseudoscalar mesons π,K,D\pi^{-}, K^{-}, D^{-} and DsD_s^{-} , respectively. The partial widths of these processes are calculated in terms of the weak form factors G1(2)(q2)G_{1(2)}(q^2), which are determined from the QCD three-point sum rules. Predictions for the mass, full width Γfull=(10.88±1.88)×1010 MeV\Gamma _{\mathrm{full}} =(10.88\pm 1.88)\times 10^{-10}~\mathrm{MeV}, and mean lifetime τ=0.610.09+0.13 ps\tau=0.61_{-0.09}^{+0.13}~\mathrm{ps} of the Tb:dT_{b:\overline{d} }^{-} obtained in the present work can be used in theoretical and experimental studies of this exotic state.

Keywords

Cite

@article{arxiv.2001.01446,
  title  = {Stable scalar tetraquark $T_{bb;\bar{u}\bar{d}}^{-}$},
  author = {S. S. Agaev and K. Azizi and B. Barsbay and H. Sundu},
  journal= {arXiv preprint arXiv:2001.01446},
  year   = {2020}
}

Comments

11 Pages, 4 Figures and 2 Tables

R2 v1 2026-06-23T13:03:37.814Z