Consequences of chirally enhanced explanations of (g − 2)μ for h → μμ and Z → μμ

Author:

Crivellin AndreasORCID,Hoferichter MartinORCID

Abstract

Abstract With the long-standing tension between experiment and Standard-Model (SM) prediction in the anomalous magnetic moment of the muon aμ recently reaffirmed by the Fermilab experiment, the crucial question becomes which other observables could be sensitive to the underlying physics beyond the SM to which aμ may be pointing. While from the effective field theory (EFT) point of view no direct correlations exist, this changes in specific new physics models. In particular, in the case of explanations involving heavy new particles above the electroweak (EW) scale with chiral enhancement, which are preferred to evade exclusion limits from direct searches, correlations with other observables sensitive to EW symmetry breaking are expected. Such scenarios can be classified according to the SU(2)L representations and the hypercharges of the new particles. We match the resulting class of models with heavy new scalars and fermions onto SMEFT and study the resulting correlations with hμμ and Zμμ decays, where, via SU(2)L symmetry, the latter process is related to Zνν and modified W-μ-ν couplings.

Publisher

Springer Science and Business Media LLC

Subject

Nuclear and High Energy Physics

Reference126 articles.

1. Muon g-2 collaboration, Measurement of the positive muon anomalous magnetic moment to 0.46 ppm, Phys. Rev. Lett. 126 (2021) 141801 [arXiv:2104.03281] [INSPIRE].

2. Muon g-2 collaboration, Measurement of the anomalous precession frequency of the muon in the Fermilab muon g − 2 experiment, Phys. Rev. D 103 (2021) 072002 [arXiv:2104.03247] [INSPIRE].

3. Muon g-2 collaboration, Magnetic-field measurement and analysis for the muon g – 2 experiment at Fermilab, Phys. Rev. A 103 (2021) 042208 [arXiv:2104.03201] [INSPIRE].

4. Muon g-2 collaboration, Beam dynamics corrections to the run-1 measurement of the muon anomalous magnetic moment at Fermilab, Phys. Rev. Accel. Beams 24 (2021) 044002 [arXiv:2104.03240] [INSPIRE].

5. Muon g-2 collaboration, Final report of the muon E821 anomalous magnetic moment measurement at BNL, Phys. Rev. D 73 (2006) 072003 [hep-ex/0602035] [INSPIRE].

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