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Nature of the vector resonance $Y(2175)$

High Energy Physics - Phenomenology 2020-04-15 v2 High Energy Physics - Experiment High Energy Physics - Lattice

Abstract

Spectroscopic parameters and decay channels of the vector resonance Y(2175)Y(2175) are studied by considering it as a diquark-antidiquark state with the quark content sususu\overline{s}\overline{u}. The mass and coupling of the tetraquark Y(2175)Y(2175) are calculated using the QCD two-point sum rules by taking into account various quark, gluon and mixed condensates up to dimension 15. Partial widths of its strong decays to ϕf0(980)\phi f_{0}(980), ϕη \phi \eta, and ϕη\phi \eta^{\prime} are computed as well. To this end, we explore the vertices Yϕf0(980)Y\phi f_{0}(980), YϕηY\phi \eta, and YϕηY\phi \eta^{\prime}, and calculate the corresponding strong couplings by means of the QCD light-cone sum rule method. The coupling GYϕfG_{Y\phi f} of the vertex Yϕf0(980)Y\phi f_{0}(980) is found using the full version of this method, and by treating the scalar meson f0(980)f_{0}(980) as a diquark-antidiquark tetraquark state. The couplings gYϕηg_{Y\phi \eta } and gYϕηg_{Y\phi \eta^{\prime}}, however, are calculated by applying the soft-meson approximation to the light-cone sum rule method. Prediction for the mass of the resonance mY=(2173±85) MeVm_{Y} =\left( 2173\pm 85\right)~\mathrm{MeV} is in excellent agreement with the data of the BaBar Collaboration \cite{Aubert:2006bu}, and within errors of calculations is compatible with the result reported by BESIII \cite {Ablikim:2014pfc}. The full width Γfull=(91.1±20.5) MeV\Gamma _{\mathrm{full}}=(91.1\pm 20.5)~ \mathrm{MeV} of the Y(2175)Y(2175) saturated by its three strong decay channels is in a reasonable agreement with existing experimental data.

Keywords

Cite

@article{arxiv.1911.09743,
  title  = {Nature of the vector resonance $Y(2175)$},
  author = {S. S. Agaev and K. Azizi and H. Sundu},
  journal= {arXiv preprint arXiv:1911.09743},
  year   = {2020}
}

Comments

11 Pages, 4 Figures and 1 Table