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Neutrino Masses and Conformal Electro-Weak Symmetry Breaking

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abstract

Dimensional transmutation in classically conformal invariant theories may explain the electro-weak scale and the fact that so far nothing but the Standard Model (SM) particles have been observed. We discuss in this paper implications of this type of symmetry breaking for neutrino mass generation.

fields

hep-ph 1

years

2026 1

verdicts

CONDITIONAL 1

representative citing papers

Dark matter in scale-invariant gravity with hidden-sector condensation

hep-ph · 2026-08-12 · conditional · novelty 6.0

A scale-invariant quadratic gravity plus hidden QCD-like sector can generate the Planck and electroweak scales, realize Starobinsky inflation, and produce dark matter from scalaron decay, with candidate masses around 10^8 to 10^11 GeV.

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  • Dark matter in scale-invariant gravity with hidden-sector condensation hep-ph · 2026-08-12 · conditional · none · ref 15 · internal anchor

    A scale-invariant quadratic gravity plus hidden QCD-like sector can generate the Planck and electroweak scales, realize Starobinsky inflation, and produce dark matter from scalaron decay, with candidate masses around 10^8 to 10^11 GeV.