English

$0^+$ XTZ states from QCD spectral sum rules

High Energy Physics - Phenomenology 2022-12-21 v1

Abstract

We review our results in\,\cite{ANR22} for the masses and couplings of Tccqq(JP=0+)T_{ccqq'}\, (J^P=0^+) states from (inverse) QCD Laplace sum rule (LSR), their ratios R{\cal R} and double ratio of sum rules (DRSR) within stability criteria and including Factorized Next-to-Leading Order (FNLO) Perturbative (PT) corrections and Lowest Order (LO) QCD condensates up to G3\langle G^3 \rangle. We show that combining R{\cal R} and DRSR can provide more precise results. Calibrated to the observed Xc(3872)X_c(3872) and Tcc1+(3875)T^{1^+}_{cc}(3875), R{\cal R} combined with DRSR lead to a more precise prediction of MTcc0+=3883(3) MeVM_{T^{0^+}_{cc}}=3883(3)~\rm{MeV}. In a similar way, calibrated to the new prediction of Tcc0+T^{0^+}_{cc} R{\cal R} \oplusDRSR lead to the improved mass predictions: MTccsˉuˉ0+=3927(6) MeVM_{T^{0^+}_{cc\bar{s}\bar{u}}}=3927(6)~\rm{MeV} and MTccsˉsˉ0+=3993(11) MeVM_{T^{0^+}_{cc\bar{s}\bar{s}}}=3993(11)~\rm{MeV}. We extend our analysis to the bottom sector and compare our results with the ones from different LSR predictions and some other determinations (lattice, quark and potential models,...) in the literature.

Keywords

Cite

@article{arxiv.2212.10184,
  title  = {$0^+$ XTZ states from QCD spectral sum rules},
  author = {R. M. Albuquerque and S. Narison and D. Rabetiarivony},
  journal= {arXiv preprint arXiv:2212.10184},
  year   = {2022}
}
R2 v1 2026-06-28T07:44:21.796Z