Modular $S_{3}$ flavoured Pati-Salam model with two family seesaw

Fuente: arXiv
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Main Authors: Hernández, A. E. Cárcamo, Varzielas, Ivo de Medeiros, King, S. F., N, Vishnudath K.
Format: Preprint
Published: 2025
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author Hernández, A. E. Cárcamo
Varzielas, Ivo de Medeiros
King, S. F.
N, Vishnudath K.
author_facet Hernández, A. E. Cárcamo
Varzielas, Ivo de Medeiros
King, S. F.
N, Vishnudath K.
contents We present a unified model of quarks and leptons with modular $S_3$ flavour symmetry, where the two lightest family masses are naturally suppressed via a Pati-Salam version of the type I seesaw mechanism, mediated through heavier vector-like fermions. Majorana neutrino masses are further suppressed through a double seesaw mechanism. The viable parameter space has a preferred range of the modulus field with Im$(τ) \sim 2 $, leading to successful fermion masses and mixing. The prediction for neutrinoless double beta decay is partly within the reach of the nEXO experiment. In particular, the Dirac CP violating neutrino oscillation phase is predicted to lie in the range $δ_{\rm CP}^ν\sim 260^o-360^o$.
format Preprint
id arxiv_https___arxiv_org_abs_2503_14610
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Modular $S_{3}$ flavoured Pati-Salam model with two family seesaw
Hernández, A. E. Cárcamo
Varzielas, Ivo de Medeiros
King, S. F.
N, Vishnudath K.
High Energy Physics - Phenomenology
We present a unified model of quarks and leptons with modular $S_3$ flavour symmetry, where the two lightest family masses are naturally suppressed via a Pati-Salam version of the type I seesaw mechanism, mediated through heavier vector-like fermions. Majorana neutrino masses are further suppressed through a double seesaw mechanism. The viable parameter space has a preferred range of the modulus field with Im$(τ) \sim 2 $, leading to successful fermion masses and mixing. The prediction for neutrinoless double beta decay is partly within the reach of the nEXO experiment. In particular, the Dirac CP violating neutrino oscillation phase is predicted to lie in the range $δ_{\rm CP}^ν\sim 260^o-360^o$.
title Modular $S_{3}$ flavoured Pati-Salam model with two family seesaw
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2503.14610