arXiv · hep-lat/0003012
Static potentials and glueball masses from QCD simulations with Wilson sea quarks
Abstract
We calculate glueball and torelon masses as well as the lowest lying hybrid potential in addition to the static ground state potential in lattice simulations of QCD with two flavours of dynamical Wilson fermions. The results are obtained on lattices with $16^3\times 32$ and $24^3\times 40$ sites at $β=5.6$, corresponding to a lattice spacing, $a^{-1}=2.65^{+5}_{-8}$ GeV, as determined from the Sommer force radius, at physical sea quark mass. The range spanned in the present study of five different quark masses is reflected in the ratios, $0.83\geq m_π/m_ρ\geq 0.57$.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Gunnar S. Bali, Bram Bolder, Norbert Eicker, Thomas Lippert, Boris Orth, Peer Ueberholz, Klaus Schilling, Thorsten Struckmann. 2000-04-27. Static potentials and glueball masses from QCD simulations with Wilson sea quarks. https://doi.org/10.1103/physrevd.62.054503
Cite the original work for its findings. Save a collection to share your selection of sources.