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Gauge-invariant renormalization of four-quark operators

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arxiv 2406.08065 v3 pith:ZROTFQO2 submitted 2024-06-12 hep-lat

classification hep-lat
keywords operatorsfour-quarkrenormalizationconversionfactorsfunctionsgauge-invariantgirs
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We study the renormalization of four-quark operators in one-loop perturbation theory. We employ a coordinate-space Gauge-Invariant Renormalization Scheme (GIRS), which can be advantageous compared to other schemes, especially in nonperturbative lattice investigations. From our perturbative calculations, we extract the conversion factors between GIRS and the modified Minimal Subtraction scheme ($\overline{\rm MS}$) at the next-to-leading order. A formidable issue in the study of the four-quark operators is that operators with different Dirac matrices mix among themselves upon renormalization. We focus on both parity-conserving and parity-violating four-quark operators, which change flavor numbers by two units ($\Delta F = 2$). The extraction of the conversion factors entails the calculation of two-point Green's functions involving products of two four-quark operators, as well as three-point Green's functions with one four-quark and two bilinear operators. The significance of our results lies in their potential to refine our understanding of QCD phenomena, offering insights into the precision of Cabibbo-Kobayashi-Maskawa (CKM) matrix elements and shedding light on the nonperturbative treatment of complex mixing patterns associated with four-quark operators.

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  1. Four-quark operators with $\Delta F = 2$ in the GIRS scheme

    hep-lat 2025-01 conditional novelty 5.0 of 10

    One-loop GIRS-to-MS conversion matrices for ΔF=2 four-quark operators are tabulated, enabling nonperturbative lattice renormalization of these operators.

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