English

On-shell Renormalization with Vector-like Leptons, One-loop Muon-Higgs Coupling and Muon g-2

High Energy Physics - Phenomenology 2024-11-12 v1

Abstract

Models with vector-like leptons can strongly modify the lepton mass generation mechanism and lead to correlated effects in lepton-Higgs couplings and lepton dipole moments. Here we begin an analysis of higher-order corrections in such models by setting up a renormalization scheme with full on-shell conditions on the lepton self energies, masses and fields. A minimal set of fundamental parameters is renormalized in the MS\overline{\text{MS}} scheme. We provide a detailed discussion of lepton mixing and redundancies at higher orders, show how the relevant counterterms can be obtained from the renormalization conditions, and determine the β\beta-functions corresponding to the scheme. As a first application we calculate the one-loop effective muon--Higgs coupling and analyse its correlation with the muon anomalous magnetic moment ΔaμVLL\Delta a_\mu^{\text{VLL}}. In the interesting case of large masses and opposite-sign coupling, the lowest-order correlation implies a fixed value of ΔaμVLL\Delta a_\mu^{\text{VLL}} around 22.5×101022.5\times 10^{-10}, while the higher-order corrections significantly reduce this value to the interval (10...18)×1010(10...18)\times 10^{-10}.

Keywords

Cite

@article{arxiv.2407.09421,
  title  = {On-shell Renormalization with Vector-like Leptons, One-loop Muon-Higgs Coupling and Muon g-2},
  author = {Kilian Möhling and Dominik Stöckinger and Hyejung Stöckinger-Kim},
  journal= {arXiv preprint arXiv:2407.09421},
  year   = {2024}
}

Comments

28 pages, 8 figures

R2 v1 2026-06-28T17:38:55.711Z