Nonperturbative renormalization of meson decay constants in quenched QCD for a renormalization group improved gauge action

Physical Review D Volume 70 Page 074502- published_at 2004
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Title ( eng )
Nonperturbative renormalization of meson decay constants in quenched QCD for a renormalization group improved gauge action
Creator
CP-PACS Collaboration
Ide K
Aoki S
Burkhalter R
Fukugita M
Hashimoto S
Ishikawa T
Ishizuka N
Iwasaki Y
Kanaya K
Kaneko T
Kuramashi Y
Lesk V
Taniguchi Y
Umeda T
Ukawa A
Yoshié T
Source Title
Physical Review D
Volume 70
Start Page 074502
Abstract
Renormalization constants (Z-factors ) of vector and axial-vector currents are determined nonperturbatively in quenched QCD for a renormalization group improved gauge action and a tadpole-improved clover quark action using the Schrödinger functional method. Nonperturbative values of Z-factors turn out to be smaller than 1-loop perturbative values by O(15%) at a lattice spacing of a-1[approximate] 1 GeV. The pseudoscalar and vector meson decay constants calculated with the nonperturbative Z-factors show a much better scaling behavior compared to previous results obtained with tadpole-improved one-loop Z-factors. In particular, the nonperturbative Z-factors normalized at infinite physical volume show that the scaling violations of the decay constants are within about 100p to the lattice spacing a-1~1 GeV. The continuum estimates obtained from data in the range a-1~ 1–2 GeV agree with those determined from finer lattices (a-1~2-4 GeV) with the standard action.
NDC
Physics [ 420 ]
Language
eng
Resource Type journal article
Publisher
The American Physical Society
Date of Issued 2004
Rights
Copyright (c) 2004 The American Physical Society
Publish Type Version of Record
Access Rights open access
Source Identifier
[ISSN] 1550-7998
[DOI] http://dx.doi.org/10.1103/PhysRevD.70.074502 isVersionOf