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Renormalization Group Running of Fermion Observables in an Extended Non-Supersymmetric SO(10) Model

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arxiv 1612.07973 v3 pith:ED6A44LP submitted 2016-12-23 hep-ph

classification hep-ph
keywords fermiongroupevolutionmodelobservablesscaleextendedhiggs
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abstract

We investigate the renormalization group evolution of fermion masses, mixings and quartic scalar Higgs self-couplings in an ${\it extended}$ non-supersymmetric SO(10) model, where the Higgs sector contains the ${\bf 10}_{\rm H}$, ${\bf 120}_{\rm H}$, and ${\bf 126}_{\rm H}$ representations. The group SO(10) is spontaneously broken at the GUT scale to the Pati-Salam group and subsequently to the Standard Model (SM) at an intermediate scale $M_{\rm I}$. We explicitly take into account the effects of the change of gauge groups in the evolution. In particular, we derive the renormalization group equations for the different Yukawa couplings. We find that the computed physical fermion observables can be successfully matched to the experimental measured values at the electroweak scale. Using the same Yukawa couplings at the GUT scale, the measured values of the fermion observables cannot be reproduced with a SM-like evolution, leading to differences in the numerical values up to around 80 %. Furthermore, a similar evolution can be performed for a ${\it minimal}$ SO(10) model, where the Higgs sector consists of the ${\bf 10}_{\rm H}$ and ${\bf 126}_{\rm H}$ representations only, showing an equally good potential to describe the low-energy fermion observables. Finally, for both the extended and the minimal SO(10) models, we present predictions for the three Dirac and Majorana CP-violating phases as well as three effective neutrino mass parameters.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Asymptotic grand unification in SO(10) with one extra dimension

    hep-ph 2025-05 conditional novelty 7.0 of 10

    A 5D SO(10) model with a 10, 120, and 16 Higgs can make gauge couplings asymptotically safe and Yukawa couplings asymptotically free, but only with an exact matching condition at the compactification scale.

  2. Electroweak Triplet Scalar Contribution to $SO(10)$ Leptogenesis

    hep-ph 2025-05 conditional novelty 6.0 of 10

    In a minimal SO(10) model with type-I seesaw dominance, decays of the electroweak triplet scalar can dominate baryogenesis and make leptogenesis viable.

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