Building blocks of the flavourful SMEFT RG
arXiv:2210.09316 · doi:10.1007/JHEP03(2023)226
Abstract
A powerful aspect of effective field theories is connecting scales through renormalisation group (RG) flow. The anomalous dimension matrix of the Standard Model Effective Field Theory (SMEFT) encodes clues to where to find relics of heavy new physics in data, but its unwieldy 2499-by-2499 size (at operator dimension 6) makes it difficult to draw general conclusions. In this paper, we study the flavour structure of the SMEFT one loop anomalous dimension matrix of dimension 6 current-current operators, a 1460-by-1460 submatrix. We take an on-shell approach, laying bare simple patterns by factorising the entries of the matrix into their gauge, kinematic and flavour parts. We explore the properties of different diagram topologies, and make explicit the connection between the IR-finiteness of certain diagrams and their gauge and flavour structure. Through a completely general flavour decomposition of the Wilson coefficient matrices, we uncover new flavour selection rules, from which small subsystems emerge which mix almost exclusively amongst themselves. We show that, for example, if we neglect all Yukawa couplings except for that of the top quark, the selection rules produce block diagonalisation within the current-current operators in which the largest block is a 61-by-61 matrix. We provide all the ingredients of the calculations in comprehensive appendices, including SM and SMEFT helicity amplitudes, and explicit results for phase space integrals and gauge contractions. This deconstruction of the matrix, and its resulting block-diagonalisation, provides a first step to understanding the IR-relevant directions in the SMEFT parameter space, hence closing in on natural places for heavy new physics to make itself known.
47 pages plus 20 pages of appendices and references. v2: Updated to match journal version, added Table 9
References in corpus (17)
- B-physics anomalies: a guide to combined explanations
- Lepton Flavor Violation in B Decays?
- Helicity Selection Rules and Non-Interference for BSM Amplitudes
- Symmetries, Sum Rules and Constraints on Effective Field Theories
- DsixTools 2.0: The Effective Field Theory Toolkit
- Renormalization group coefficients and the S-matrix
- Positivity bounds in the Standard Model effective field theory beyond tree level
- Matching for FCNC effects in the flavour-symmetric SMEFT
- Adding Flavor to the SMEFT
- : a library to perform Renormalization Group evolution in the Standard Model Effective Theory
- The Bottom-Up EFT: Complete UV Resonances of the SMEFT Operators
- Renormalization and non-renormalization of scalar EFTs at higher orders
- Spinning Sum Rules for the Dimension-Six SMEFT
- RG of GR from On-shell Amplitudes
- Four-fermion operators at dimension 6: dispersion relations and UV completions
- Renormalization group improved implications of semileptonic operators in SMEFT
- Flavorful Electroweak Precision Observables in the Standard Model Effective Field Theory
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- ALPs, the on-shell way
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- Amplitudes and partial wave unitarity bounds
- Positivity and partial wave unitarity bounds on ALP theories via amplitude methods