English

$\bar{b}\bar{b}ud$ tetraquark resonances in the Born-Oppenheimer approximation using lattice QCD potentials

High Energy Physics - Lattice 2019-09-04 v1

Abstract

We study tetraquark resonances using lattice QCD potentials for a pair of static antiquarks bˉbˉ\bar{b}\bar{b} in the presence of two light quarks udud. The system is treated in the Born-Oppenheimer approximation and we use the emergent wave method. We focus on the isospin I=0I=0 channel, but consider different orbital angular momenta ll of the heavy antiquarks bˉbˉ\bar{b}\bar{b}. We extract the phase shifts and search for \mboxS\mbox{S} and \mboxT\mbox{T} matrix poles on the second Riemann sheet. For orbital angular momentum l=1l=1 we find a tetraquark resonance with quantum numbers I(JP)=0(1)I(J^P)=0(1^-), resonance mass m=105764+4MeVm=10576^{+4}_{-4} \, \textrm{MeV} and decay width Γ=112103+90MeV\Gamma= 112^{+90}_{-103} \textrm{MeV}, which can decay into two BB mesons.

Keywords

Cite

@article{arxiv.1811.04724,
  title  = {$\bar{b}\bar{b}ud$ tetraquark resonances in the Born-Oppenheimer approximation using lattice QCD potentials},
  author = {Martin Pflaumer and Pedro Bicudo and Marco Cardoso and Antje Peters and Marc Wagner},
  journal= {arXiv preprint arXiv:1811.04724},
  year   = {2019}
}

Comments

8 pages, 7 figures, Talk given at the XIIIth Quark Confinement and the Hadron Spectrum (Confinement 2018), 31 July - 6 August 2018, Maynooth, Ireland