The Kaon B-parameter with the Wilson Quark Action using Chiral Ward Identities
arXiv:hep-lat/9901018 · doi:10.1103/PhysRevD.60.034511
Abstract
A lattice QCD calculation of the kaon parameter is carried out with the Wilson quark action in the quenched approximation at . The mixing problem of the four-quark operators is solved non-perturbatively with full use of chiral Ward identities employing four external quarks with an equal off-shell momentum in the Landau gauge. This method, without invoking any effective theory, enables us to construct the weak four-quark operators exhibiting good chiral behavior. Our results for with the non-perturbative mixing coefficients show small scaling violation beyond the lattice cut-off GeV. Our estimate concludes at GeV, which agrees with the value obtained with the Kogut-Susskind quark action. For comparison we also calculate with one-loop perturbative mixing coefficients. While this yields incorrect values at finite lattice spacing, a linear extrapolation to the continuum limit as a function of leads to a result consistent with those obtained with the Ward identity method.
42 pages, 22 Postscript figures, added a new reference[26]