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Neutrino Masses and Scalar Singlet Dark Matter

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arxiv 1609.03274 v2 pith:SUQYTVHH submitted 2016-09-12 hep-ph

classification hep-ph
keywords scalarmodelneutrinosingletconstraintsdarkdeltaisospin
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We propose a simple extension of the Standard Model (SM) which has a viable dark matter (DM) candidate, as well as can explain the generation of tiny neutrino masses. The DM is an electroweak (EW) singlet scalar $S$, odd under an imposed exact $Z_2$ symmetry, interacting to SM through `Higgs-portal' coupling, while all other particles are even under $Z_2$. The model also has an EW isospin $3/2$ scalar, $\Delta$ and a pair of EW isospin vector, $\Sigma$ and $\bar{\Sigma}$, responsible for generating tiny neutrino mass via the effective dimension seven operator. Thanks to the additional interactions with $\Delta$, the scalar singlet DM $S$ survives a large region of parameter space by relic density constraints from WMAP/PLANCK and direct search bounds from updated LUX data. Constraints on the model from Large Hadron Collider (LHC) has also been discussed.

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  1. Discovery prospects of a singly-charged scalar at $\mu$TRISTAN

    hep-ph 2026-01 conditional novelty 6.0 of 10

    A same-sign muon collider could discover the singly-charged scalar of Type-II seesaw through a lepton-flavor-violating process, and the final lepton flavor could distinguish normal from inverted neutrino mass ordering...

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