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arXiv:2501.08711·v2·High Energy Physics — Phenomenology

Scotoseesaw mechanism from a symmetry of matter

Doan Minh Luong🇻🇳 · Phung Van Dong🇻🇳

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Abstract

We show that the neutrino mass generation and the dark matter stability can be governed by the center of the QCD group, which is a group. Three right-handed neutrinos transform under as , where is the cube root of unity, and they couple to usual lepton doublets via the usual Higgs doublet and two new scalar doublets , which transform under as , respectively. This leads to a scotoseesaw mechanism in which the seesaw and scotogenic neutrino mass generations are induced by the Majorana mass and the Dirac mass, respectively. Although the lightest of the fields is stabilized, responsible for dark matter, the model lacks an explanation for relic density and/or direct detection. The issue can be solved in a gauge completion of the model, for which the center of the QCD group is isomorphic to for .

Comments: 26 pages, 3 tables, 7 figures; matches published version in EPJC

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