期刊
NUCLEAR PHYSICS B
卷 673, 期 1-2, 页码 217-237出版社
ELSEVIER SCIENCE BV
DOI: 10.1016/j.nuclphysb.2003.09.035
关键词
quark mass; chiral condensate; quark-gluon condensate; lattice QCD; domain-wall quark; chiral perturbation theory
We determine several quantities in quenched lattice QCD with exact chiral symmetry. For 100 gauge configurations generated with Wilson gauge action at beta = 6.0 on the 16(3) x 32 lattice, we compute quenched quark propagators for 13 bare quark masses. The pion decay constant is extracted from the pion propagator, and from which the inverse lattice spacing is determined to be a(-1) = 1.979(6) GeV. The parameters (delta, A, B) in the pseudoscalar meson mass formula in quenched chiral perturbation theory (qchiPT) to one-loop order are determined. Further, we measure the index (topological) susceptibility of these 100 gauge configurations, chi(t) = (175 +/- 16 MeV)(4), from which we obtain an estimate of the mass of eta' in qchiPT, and the coefficient of quenched chiral logarithm, both in good agreement with the values determined from the pion masses, as well as with the theoretical estimates. With our values of delta, A, B, the experimental inputs of pion and kaon masses, and the pion decay constant, we determine the light quark masses: m(u,d) = 4.1 +/- 0.3 MeV, and m(s) = 92 +/- 9 MeV, in the MS scheme at scale mu = 2 GeV. Also, we determine the quark condensate <(q) over barq> = -(250 +/- 3 MeV)(3), and the quark-gluon condensate g<(q) over bar (munu)F(munu)q> = -(434 +/- 4 MeV)(5), in the MS scheme at scale 2 GeV. (C) 2003 Elsevier B.V. All rights reserved.
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