A lattice study of the masses of singlet 0++ mesons
arXiv:hep-lat/0608026 · doi:10.1103/PhysRevD.74.114504
Abstract
We compute the masses of the flavour singlet 0++ mesons using (n_f=2) unquenched lattice QCD with the Iwasaki and Wilson gauge actions. Both fermionic and glueball interpolating operators are used to create the states. The mass of the lightest 0++ meson is suppressed relative to the mass of the 0++ glueball in quenched QCD at an equivalent lattice spacing. We discuss two possible physical reasons for this.
References in corpus (1)
Cited by in corpus (27)
- Glueballs, Hybrids, Multiquarks. Experimental facts versus QCD inspired concepts
- The Physics of Glueballs
- The Status of Glueballs
- Towards the glueball spectrum from unquenched lattice QCD
- Light Hadron Masses from Lattice QCD
- Scalar mesons moving in a finite volume and the role of partial wave mixing
- Glueball nature of the sigma/f_0(600) from pi-pi and gamma-gamma scatterings
- Properties of the rho and sigma Mesons from Unitary Chiral Dynamics
- Gluonium nature of the sigma/f_0(600) from its coupling to KK
- Sigma meson in pole-dominated QCD sum rules
- Lattice QCD study of four-quark components of the isosinglet scalar mesons: Significance of disconnected diagrams
- Light scalar mesons in QCD
- Methods for Pseudoscalar Flavour-Singlet Mesons with Staggered Fermions
- Exclusive scalar meson production for energy ranges available at the GSI Facility for Antiproton and Ion Research (GSI-FAIR) and at the Japan Proton Accelerator Research Complex (J-PARC)
- Chiral Nonet Mixing in Decay
- Lattice status of gluonia/glueballs
- Di-Gluonium Sum Rules, I = 0 Scalar Mesons and Conformal Anomaly
- Probing the substructure of
- Spectroscopy From The Lattice: The Scalar Glueball
- Hard hadron spectroscopy
- Two-photon width and gluonic component of sigma/f_0(600)
- Noise reduction algorithm for Glueball correlators
- Gluon-Glueball Duality and Glueball Searches
- Spinless mesons and glueballs mixing patterns in SU(3) flavor limit
- Decay properties of light hybrids
- Mixing of X and Y states from QCD Sum Rules analysis
- Chiral-Symmetry-Violating Effects and Near-Maximal Mixing of Scalar Gluonium and Quark Mesons