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One-loop matching of CP-odd four-quark operators to the gradient-flow scheme

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arxiv 2304.00985 v2 pith:KAFSJZZG submitted 2023-04-03 hep-lat hep-exhep-phnucl-th

One-loop matching of CP-odd four-quark operators to the gradient-flow scheme

classification hep-lat hep-exhep-phnucl-th
keywords operatorsdipoleelectricfour-quarkmatchingmomentneutroncomputations
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The translation of experimental limits on the neutron electric dipole moment into constraints on heavy $CP$-violating physics beyond the Standard Model requires knowledge about non-perturbative matrix elements of effective operators, which ideally should be computed in lattice QCD. However, this necessitates a matching calculation as an interface to the effective field theory framework, which is based on dimensional regularization and renormalization by minimal subtraction. We calculate the one-loop matching between the gradient-flow and minimal-subtraction schemes for the $CP$-violating four-quark operators contributing to the neutron electric dipole moment. The gradient flow is a modern regularization-independent scheme amenable to lattice computations that promises, e.g., better control over power divergences than traditional momentum-subtraction schemes. Our results extend previous work on dimension-five operators and provide a necessary ingredient for future lattice-QCD computations of the contribution of four-quark operators to the neutron electric dipole moment.

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  1. One-loop matching of the LEFT to the QCD gradient flow

    hep-ph 2026-01 conditional novelty 7.0

    All one-loop matching coefficients connecting the full baryon- and lepton-number-conserving low-energy effective field theory up to dimension six to the QCD gradient flow are computed.