Effective Field Theory of Chirally-Enhanced Muon Mass and Dipole Operators
arXiv:2302.14144 · doi:10.1103/PhysRevD.107.095043
Abstract
We study corrections to observables related to the muon in the context of models of new physics which generate mass-enhanced corrections to the muon dipole moments. Working in the Standard Model effective theory, we demonstrate a correlation between the decay of the Higgs boson to muons, and the magnetic and electric dipole moments of the muon generated by the dominant matching corrections. This defines a novel way to classify predictions for a wide variety of models of new physics based on the pattern of deviations of these three observables. In particular, when applied to specific models we find that this correlation has a potential to rule out whole models or set upper bounds on the scale of new physics motivated by the muon anomalous magnetic moment.
28 pages + appendices, 8 figures. v2: Matches published version
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Cited by in corpus (8)
- The Muon Magnetic Moment and Physics Beyond the Standard Model
- Predictions for Muon Electric and Magnetic Dipole Moments from in Two-Higgs-Doublet Models with New Leptons
- Multi Higgs Boson Signals of a Modified Muon Yukawa Coupling at a Muon Collider
- Two-Higgs Doublet Model Effective Field Theory
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