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March 8, 2026Journal of High Energy Physics0 citationsOpen Access

Chasing the muon EDM to constrain the SMEFT and UV models

KDKuldeep DekaMLMarta LosadaYNYosef Nir

Key Points

  • The research aims to identify processes to measure the electric dipole moment of the muon, enhancing constraints on effective field theories and potential new physics.
  • Proposal of an experiment measuring the muon electric dipole moment (d μ) with unprecedented sensitivity.
  • Exploration of dimension-six CP violating operators and identification of sensitive dipole and four-fermion operators.
  • Examination of three ultraviolet (UV) completions: vector-like leptons, heavy vector bosons, and two Higgs doublet models.
  • Analysis of parameter spaces that the proposed experiment can uniquely explore.
  • Identification of dipole operators with strong sensitivity to d μ measurements.
  • Four classes of four-fermion operators show potential for exploring new physics.
  • Potential reach for discovery at the order of 10 TeV scale.

Abstract

A bstract Following a proposal for an experiment with sensitivity to an electric dipole moment (EDM) of the muon d μ of order 6 × 10 − 23 e cm, three to four orders of magnitude below the current bound, but still seven orders of magnitude above the current bound on the EDM of the electron d e, we explore the discovery potential of such an experiment. Within the dimension-six CP violating operators of the Standard Model effective field theory (SMEFT), we identify two dipole operators where d μ has the strongest sensitivity, and four classes of four-fermion operators where it has the best sensitivity for regions of parameter space that are far from minimal flavor violation. We further consider three UV completions: vector-like leptons (VLLs), heavy vector boson with off-diagonal leptonic couplings, and two Higgs doublet model. For each, we identify the region in parameter space that will be uniquely explored by the proposed d μ experiment. In case of VLLs, we also find measurements of Γ (h → μμ) offer competitive sensitivity, highlighting the complementary role of collider observables. Generically, the potential reach is to O O (10 TeV) scale of new physics.

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Cite This Study

Deka et al. (2026) studied this question.

synapsesocial.com/papers/69ada962bc08abd80d5bca48https://doi.org/10.1007/jhep03(2026)065
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