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RI/MOM and RI/SMOM renormalization of quark bilinear operators using overlap fermions

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arxiv 2204.09246 v3 pith:USIEFL62 submitted 2022-04-20 hep-lat

RI/MOM and RI/SMOM renormalization of quark bilinear operators using overlap fermions

classification hep-lat
keywords renormalizationsmomgaugelatticeactionconstantseitherfermions
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We present the vector, scalar and tensor renormalization constants (RCs) using overlap fermions with either regularization independent momentum subtraction (RI/MOM) or symmetric momentum subtraction (RI/SMOM) as the intermediate scheme on the lattice with lattice spacings $a$ from 0.04 fm to 0.12 fm. Our gauge field configurations from the MILC and RBC/UKQCD collaborations include sea quarks using either the domain wall or the HISQ action, respectively. The results show that RI/MOM and RI/SMOM can provide consistent renormalization constants to the $\overline{\textrm{MS}}$ scheme, after proper $a^2p^2$ extrapolations. But at $p\sim 2$\,GeV, both RI/MOM and RI/SMOM suffer from nonperturbative effects which cannot be removed by the perturbative matching. The comparison between the results with different sea actions also suggests that the renormalization constant is discernibly sensitive to the lattice spacing but not to the bare gauge coupling in the gauge action.

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  1. Toward precise $\xi$ gauge fixing for the lattice QCD

    hep-lat 2025-09 conditional novelty 6.0

    An empirical precision-extrapolation method reproduces the ξ-dependent RI/MOM renormalization constants of quark bilinear operators on the lattice to 0.2-0.3% for ξ up to 1.