High-loop perturbative renormalization constants for Lattice QCD (II): three-loop quark currents for tree-level Symanzik improved gauge action and nf=2 Wilson fermions

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作者
M. Brambilla
F. Di Renzo
机构
[1] Università di Parma and INFN,Dipartimento di Fisica e Scienze della Terra
[2] Gruppo Collegato di Parma,undefined
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Renormalization Constant; Finite Size Effect; Landau Gauge; Finite Lattice; Wilson Fermion;
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摘要
Numerical Stochastic Perturbation Theory was able to get three- (and even four-) loop results for finite Lattice QCD renormalization constants. More recently, a conceptual and technical framework has been devised to tame finite size effects, which had been reported to be significant for (logarithmically) divergent renormalization constants. In this work we present three-loop results for fermion bilinears in the Lattice QCD regularization defined by tree-level Symanzik improved gauge action and nf=2 Wilson fermions. We discuss both finite and divergent renormalization constants in the RI’-MOM scheme. Since renormalization conditions are defined in the chiral limit, our results also apply to Twisted Mass QCD, for which non-perturbative computations of the same quantities are available.
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