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Scoto-seesaw model implied by flavor-dependent Abelian gauge charge

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arxiv 2409.06393 v2 pith:QY23ZNMJ submitted 2024-09-10 hep-ph

Scoto-seesaw model implied by flavor-dependent Abelian gauge charge

classification hep-ph
keywords chargegaugemattermodelneutrinodarkabeliancandidates
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Assuming fundamental fermions possess a new Abelian gauge charge that depends on flavors of both quark and lepton, we obtain a simple extension of the Standard Model, which reveals some new physics insights. The new gauge charge anomaly cancellation not only explains the existence of just three fermion generations as observed but also requires the presence of a unique right-handed neutrino $\nu_R$ with a non-zero new gauge charge. Further, the new gauge charge breaking supplies a residual matter parity, under which the fundamental fermions and $\nu_R$ are even, whereas a right-handed neutrino $N_R$ without the new charge is odd. Consequently, light neutrino masses in our model are generated from the tree-level type-I seesaw mechanism induced by $\nu_R$ and from the one-loop scotogenic contribution accommodated by potential dark matter candidates, $N_R$ and dark scalars, odd under the matter parity. We examine new physics phenomena related to the additional gauge boson, which could be observed at colliders. We analyze the constraints imposed on our model by current experimental limits on neutrino masses, neutral meson oscillations, $B$-meson decays, and charged lepton flavor violating processes. We also investigate the potential dark matter candidates by considering relic density and direct detection.

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Cited by 2 Pith papers

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  1. Physical implications of a double right-handed gauge symmetry

    hep-ph 2026-01 unverdicted novelty 6.0

    A double right-handed U(1) gauge extension generates the Standard Model fermion mass hierarchy at tree and loop levels and stabilizes a viable scalar singlet dark matter particle consistent with relic density and dire...

  2. Constraints from the SM-like Higgs boson in a flavor-dependent $U(1)$ extension of the Standard Model

    hep-ph 2026-07 conditional novelty 3.5

    In this U(1)_X model, κ_γ stays within ATLAS/CMS 1σ while charged Higgses are pushed above roughly 650–700 GeV and λ_13+λ_14 obey simple lower bounds set by the H–heavy-Higgs mixings.