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Inverse seesaw and dark matter in models with exotic lepton triplets

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arxiv 1204.2529 v1 pith:WBLOL7XN submitted 2012-04-11 hep-ph

Inverse seesaw and dark matter in models with exotic lepton triplets

classification hep-ph
keywords darkexoticmatterneutrinoinverseleptonsmassmodels
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We show that models with exotic leptons transforming as E ~ (1,3,-1) under the standard model gauge symmetry are well suited for generating neutrino mass via a radiative inverse seesaw. This approach realizes natural neutrino masses and allows multiple new states to appear at the TeV scale. The exotic leptons are therefore good candidates for new physics that can be probed at the LHC. Furthermore, remnant low-energy symmetries ensure a stable dark matter candidate, providing a link between dark matter and the origins of neutrino mass.

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    A three-loop inverse scotogenic seesaw with residual Z2⊗Z3 yields viable multi-component dark matter and approximate resonant leptogenesis while fitting neutrino and CLFV bounds.