English

Lattice study on a tetraquark state $T_{bb}$ in the HAL QCD method

High Energy Physics - Lattice 2022-12-02 v1 Nuclear Theory

Abstract

We investigate a doubly-bottomed tetraquark state TbbT_{bb} (bbuˉdˉ)(bb \bar{u}\bar{d}) with quantum number I(JP)=0(1+)I(J^P)=0(1^+) in (2+1)(2+1)-flavor lattice QCD. Using the Non-Relativistic QCD (NRQCD) quark action for bb quarks, we have extracted the coupled channel potential between BˉBˉ\bar{B}\bar{B}^* and BˉBˉ\bar{B}^* \bar{B}^* in the HAL QCD method at a0.09a \approx 0.09 {fm} on 323×6432^3\times 64 lattices. The potential predicts an existence of a bound TbbT_{bb} below the BˉBˉ\bar{B}\bar{B}^* threshold. At the physical pion mass mπ140m_\pi\approx140 {MeV} extrapolated from mπ410,570,700m_\pi\approx 410,\, 570,\, 700 {MeV}, a binding energy with its statistical error is given by Ebinding(coupled)=83(10)E_{\rm binding}^{\rm (coupled)} = 83(10) MeV from a coupled channel analysis where effects due to virtual BˉBˉ\bar{B}^* \bar{B}^* states are included through the coupled channel potential, while we obtain Ebinding(single)=155(17)E_{\rm binding}^{\rm (single)} = 155(17) MeV only from a potential for a single BˉBˉ\bar{B}\bar{B}^* channel. This difference indicates that the effect from virtual BˉBˉ\bar{B}^* \bar{B}^* states is sizable to the binding energy of TbbT_{bb}. Adding ±20\pm 20 MeV as empirical systematic error caused by the NRQCD approximation for bb quarks, our estimate of the TbbT_{bb} binding energy becomes 83(10)(20)83(10)(20) MeV.

Keywords

Cite

@article{arxiv.2212.00202,
  title  = {Lattice study on a tetraquark state $T_{bb}$ in the HAL QCD method},
  author = {Sinya Aoki and Takafumi Aoki},
  journal= {arXiv preprint arXiv:2212.00202},
  year   = {2022}
}

Comments

9 pages, 6 figures, a talk given at the 39th International Symposium on Lattice Field Theory (Lattice 2022), 8-13 August, 2022, Bonn, Germany

R2 v1 2026-06-28T07:18:54.191Z