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arxiv: 1711.00711 · v1 · pith:4BT7JLK2new · submitted 2017-11-02 · ✦ hep-lat · hep-ph

Glueball relevant study on isoscalars from N_f=2 lattice QCD

classification ✦ hep-lat hep-ph
keywords statelatticeglueballisoscalarsmassoperatoralonganisotropic
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We perform a glueball-relevant study on isoscalars based on anisotropic $N_f=2$ lattice QCD gauge configurations. In the scalar channel, we identify the ground state obtained through gluonic operators to be a single-particle state through its dispersion relation. When $q\bar{q}$ operator is included, we find the mass of this state does not change, and the $q\bar{q}$ operator couples very weakly to this state. So this state is most likely a glueball state. For pseudoscalars, along with the exiting lattice results, our study implies that both the conventional $q\bar{q}$ state $\eta_2$ (or $\eta'$ in flavor $SU(3)$) and a heavier glueball-like state with a mass of roughly 2.6 GeV exist in the spectrum of lattice QCD with dynamical quarks.

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