We present results for light quark masses from a systematic lattice QCD study with two degenerate flavors of dynamical quarks. Simulations are made with a renormalization-group improved gauge action and a mean-field improved clover quark action for sea quark masses corresponding to mPS/mV≈0.8--0.6 and the lattice spacing a=0.22--0.11 fm. In the continuum limit we find mudMSˉ(2GeV)=3.44−0.22+0.14 MeV using the π and ρ meson masses as physical input, and msMSˉ(2GeV)=88−6+4 MeV or 90−11+5 MeV with the K or ϕ meson mass as additional input. The quoted errors represent statistical and systematic combined, the latter including those from continuum and chiral extrapolations, and from renormalization factors. Compared to quenched results, two flavors of dynamical quarks reduce quark masses by about 25%.
@article{arxiv.hep-lat/0004010,
title = {Dynamical Quark Effects on Light Quark Masses},
author = {PACS Collaboration and A. Ali Khan and S. Aoki and G. Boyd and R. Burkhalter and S. Ejiri and M. Fukugita and S. Hashimoto and N. Ishizuka and Y. Iwasaki and K. Kanaya and T. Kaneko and Y. Kuramashi and T. Manke and K. Nagai and M. Okawa and H. P. Shanahan and A. Ukawa and T. Yoshie},
journal= {arXiv preprint arXiv:hep-lat/0004010},
year = {2012}
}
Comments
4 pages, revtex, 3 eps figures. Double statistics at beta=2.1, error estimates elaborated. Accepted for publication in Phys. Rev. Lett