paper

Non-perturbative renormalization of meson decay constants in quenched QCD for a renormalization group improved gauge action

arXiv:hep-lat/0404021 · doi:10.1103/PhysRevD.70.074502

Abstract

Renormalization constants (-factors) of vector and axial-vector currents are determined non-perturbatively in quenched QCD for a renormalization group improved gauge action and a tadpole improved clover quark action using the Schrödinger functional method. Non-perturbative values of -factors turn out to be smaller than one-loop perturbative values by at lattice spacing of 1 GeV. The pseudoscalar and vector meson decay constants calculated with the non-perturbative -factors show a much better scaling behavior compared to previous results obtained with tadpole improved one-loop -factors. In particular, the non-perturbative -factors normalized at infinite physical volume show that scaling violation of the decay constants are within about 10% up to the lattice spacing GeV. The continuum estimates obtained from data in the range 1 -- 2 GeV agree with those determined from finer lattices ( GeV) with the standard action.

19 pages, 18 eps figures. Corrected address

Non-perturbative renormalization of meson decay constants in quenched QCD for a renormalization group improved gauge action · wovepaper