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Full parameter scan of the Zee model: exploring Higgs lepton flavor violation

2 Pith papers cite this work. Polarity classification is still indexing.

2 Pith papers citing it
abstract

We study the general Zee model, which includes an extra Higgs scalar doublet and a new singly-charged scalar singlet. Neutrino masses are generated at one-loop level, and in order to describe leptonic mixing, both the Standard Model and the extra Higgs scalar doublets need to couple to leptons (in a type-III two-Higgs doublet model), which necessarily generates large lepton flavor violating signals, also in Higgs decays. Imposing all relevant phenomenological constraints and performing a full numerical scan of the parameter space, we find that both normal and inverted neutrino mass orderings can be fitted, although the latter is disfavored with respect to the former. In fact, inverted ordering can only be accommodated if $\theta_{23}$ turns out to be in the first octant. A branching ratio for $h \to \tau \mu$ of up to $10^{-2}$ is allowed, but it could be as low as $10^{-6}$. In addition, if future expected sensitivities of $\tau\to \mu\gamma$ are achieved, normal ordering can be almost completely tested. Also, $\mu e$ conversion is expected to probe large parts of the parameter space, excluding completely inverted ordering if no signal is observed. Furthermore, non-standard neutrino interactions are found to be smaller than $10^{-6}$, which is well below future experimental sensitivity. Finally, the results of our scan indicate that the masses of the additional scalars have to be below $2.5$ TeV, and typically they are lower than that and therefore within the reach of the LHC and future colliders.

fields

hep-ph 2

years

2026 1 2025 1

verdicts

UNVERDICTED 2

representative citing papers

Zee models with a non-invertible $Z_M$ symmetry

hep-ph · 2026-05-22 · unverdicted · novelty 5.0

Zee models are classified under non-invertible Z_M symmetries; viable candidates are identified from data consistency, and a Z_7 benchmark yields numerical predictions for neutrino parameters and CLFV rates.

citing papers explorer

Showing 2 of 2 citing papers.

  • Zee models with a non-invertible $Z_M$ symmetry hep-ph · 2026-05-22 · unverdicted · none · ref 9 · internal anchor

    Zee models are classified under non-invertible Z_M symmetries; viable candidates are identified from data consistency, and a Z_7 benchmark yields numerical predictions for neutrino parameters and CLFV rates.

  • Heavy neutral bosons and dark matter in the 3-3-1 model with axionlike particle hep-ph · 2025-12-22 · unverdicted · none · ref 30 · internal anchor

    In the 331ALP model the second Higgs is predicted above 600 GeV and the Z' above 5.1 TeV, with dark matter mass related to the axion breaking scale under a residual Z2 symmetry.