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Dark matter in the Scotogenic model with spontaneous lepton number violation

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abstract

Scotogenic models constitute an appealing solution to the generation of neutrino masses and to the dark matter mystery. In this work we consider a version of the Scotogenic model that breaks lepton number spontaneously. At this scope, we extend the particle content of the Scotogenic model with an additional singlet scalar which acquires a non-zero vacuum expectation value and breaks a global lepton number symmetry. As a consequence, a massless Goldstone boson, the majoron, appears in the particle spectrum. We discuss how the presence of the majoron modifies the phenomenology, both in flavor and dark matter observables. We focus on the fermionic dark matter candidate and analyze its relic abundance and prospects for both direct and indirect detection.

fields

hep-ph 1

years

2025 1

verdicts

CONDITIONAL 1

representative citing papers

Flavour and precision probes of a class of scotogenic models

hep-ph · 2025-06-29 · conditional · novelty 5.0

Full next-to-leading-order corrections to leptonic Z and Higgs decays are derived for the T1-2-A scotogenic model, and the resulting cLFV and electroweak observables are scanned to identify future collider probes.

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  • Flavour and precision probes of a class of scotogenic models hep-ph · 2025-06-29 · conditional · none · ref 16 · internal anchor

    Full next-to-leading-order corrections to leptonic Z and Higgs decays are derived for the T1-2-A scotogenic model, and the resulting cLFV and electroweak observables are scanned to identify future collider probes.