I=1/2 low-lying mesons in lattice QCD
arXiv:1412.1218 · doi:10.1088/1674-1137/39/8/083101
Abstract
Using conventional constituent-quark model, scalar , vector , and axial vector mesons are studied in the asqtad-improved staggered fermion with the wall-source and point-sink interpolators. The mass ratio of is numerically confirmed to vary apparently with quark mass, and the experimental ordering is elegantly hold when the light quark masses are sufficiently small, while the valence strange quarks are fixed to its physical values. We also get reasonable signals for meson suggested by SCALAR Collaboration from lattice QCD. The computations are conducted with the MILC flavor gauge configurations at three lattice spacings: , , and fm.
Submitted to Chinese Physics C
References in corpus (10)
- Quark mass dependence of the rho and sigma from dispersion relations and Chiral Perturbation Theory
- Lattice study of light scalar tetraquarks with I=0,2,1/2,3/2: are sigma and kappa tetraquarks?
- Clues for the existence of two resonances
- Scalar Meson Spectroscopy with Lattice Staggered Fermions
- K pi vector form factor constrained by tau ---> K pi nu_tau and K_l3 decays
- Lattice QCD study of the s-wave scattering lengths in the I=0 and 2 channels
- Tuning Fermilab Heavy Quarks in 2+1 Flavor Lattice QCD with Application to Hyperfine Splittings
- Lattice QCD study on meson decay width
- Lowest-lying Tetra-Quark Hadrons in Anisotropic Lattice QCD
- Scalar and axial-vector mesons