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Combined explanations of $(g-2)_\mu$, $(g-2)_e$ and implications for a large muon EDM

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arxiv 1905.03789 v1 pith:QHPVLLN2 submitted 2019-05-09 hep-ph hep-ex

classification hep-phhep-ex
keywords muonelectronconsiderdecouplingmomentpossibleableabove
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We consider possible beyond-the-Standard-Model (BSM) effects that can accommodate both the long-standing tension in the anomalous magnetic moment of the muon, $a_\mu=(g-2)_\mu/2$, as well as the emerging $2.5\sigma$ deviation in its electron counterpart, $a_e=(g-2)_e/2$. After performing an EFT analysis, we consider BSM physics realized above the electroweak scale and find that a simultaneous explanation becomes possible in models with chiral enhancement. However, this requires a decoupling of the muon and electron BSM sectors to avoid the strong constraints from $\mu\to e\gamma$. In particular, this decoupling implies that there is no reason to expect the muon electric dipole moment (EDM) $d_\mu$ to be correlated with the electron EDM $d_e$, avoiding the very stringent limits for the latter. While some of the parameter space for $d_\mu$ favored by $a_\mu$ could be tested at the $(g-2)_\mu$ experiments at Fermilab and J-PARC, a dedicated muon EDM experiment at PSI would be able to probe most of this region.

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  1. A compact frozen-spin trap for the search for the electric dipole moment of the muon

    hep-ex 2025-01 conditional novelty 6.0 of 10

    A compact frozen-spin muon trap design that projects a sensitivity of 4e-21 e·cm (Phase I) and 6e-23 e·cm (Phase II), improving the current muon EDM limit by up to three orders of magnitude.

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