Author:
Bakshi Supratim Das,Machado-Rodríguez Jonathan,Ramos Maria
Abstract
Abstract
We compute the renormalization group equations (RGEs) of the Standard Model effective field theory (EFT) extended with a real scalar singlet, up to dimension-five and one-loop accuracy. We compare our renormalization results with those found in the shift-symmetry preserving limit, which characterizes axion-like particles (ALPs). The matching and running equations below the electroweak scale are also obtained, including the mixing effects in the scalar sector. Such mixing leads to interesting phenomenological consequences that are absent in the EFT at the renormalizable level, namely new correlations among the triplet and quartic Higgs couplings are predicted. All RGEs obtained in this work are implemented in a new Mathematica package — ALPRunner, together with functions to solve the running numerically for an arbitrary set of UV parameters. As an application, we obtain electric dipole moment constraints on particular regions of the singlet parameter space, and quantify the level of shift-breaking in these regions.
Publisher
Springer Science and Business Media LLC
Subject
Nuclear and High Energy Physics
Cited by
3 articles.
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1. ALP contribution to the strong
CP
problem;Physical Review D;2024-07-23
2. ALPs, the on-shell way;Journal of High Energy Physics;2024-05-15
3. The chiral Lagrangian of CP-violating axion-like particles;Journal of High Energy Physics;2024-02-02