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Small Neutrino Masses from a Decoupled Singlet Scalar Field

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arxiv 2407.13595 v4 pith:SB5F3V4O submitted 2024-07-18 hep-ph

classification hep-ph
keywords scalardarkmassesneutrinosmallsingletsymmetrydoublet
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abstract

We propose a unified solution with $Z_4$ discrete symmetry for small neutrino masses and stability of dark matter. The Standard Model is extended with an inert doublet scalar, a dark singlet scalar, a spurion scalar and right-handed neutrinos, which all transform nontrivially under $Z_4$. After the $Z_4$ symmetry is broken to $Z_2$ by the VEV of the spurion, much below the mass scale of the dark singlet scalar, a small lepton number violating coupling for the inert doublet is generated at tree level, so small neutrino masses are obtained at one-loops for relatively light new fields. We discuss the important roles of the $Z_4$ symmetry for neutrino masses, dark matter physics and thermal leptogenesis.

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Cited by 1 Pith paper

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  1. Symmetry-Protected Momentum Exchange between Dark Matter and Dark Energy

    astro-ph.CO 2026-03 conditional novelty 5.0 of 10

    Symmetry-protected pure momentum exchange between inert-doublet dark matter and pNGB dark energy saturates σ8 suppression at ~3.6%, short of resolving the S8 tension.

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