Phenomenology of extended multiHiggs doublet models with $S_4$ family symmetry

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Hernández, A. E. Cárcamo, Espinoza, Catalina, Gómez-Izquierdo, Juan Carlos, González, Juan Marchant, Mondragón, Myriam
Format: Preprint
Published: 2022
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866917864281210880
author Hernández, A. E. Cárcamo
Espinoza, Catalina
Gómez-Izquierdo, Juan Carlos
González, Juan Marchant
Mondragón, Myriam
author_facet Hernández, A. E. Cárcamo
Espinoza, Catalina
Gómez-Izquierdo, Juan Carlos
González, Juan Marchant
Mondragón, Myriam
contents We propose extended 3HDM and 4HDM models where the SM gauge symmetry is enlarged by the spontaneously broken $S_4$ group, the preserved $Z_2$ and broken $Z_4$ cyclic symmetries. Each model has three active $SU(2)$ scalar doublets, in addition, the first one has an extra inert scalar singlet, whereas the second model has an inert scalar doublet. Furthermore, each model has several extra gauge singlet scalars, which are triplets under $S_4$. Both models yield the same structure of the mass matrices for the fermion sector, where a radiative seesaw generates the tiny light active neutrinos masses at one-loop level, through the $S_4$ triplets. The presence of flavor changing neutral currents mediated by heavy scalars allowed us to study the $(K^0-\overline{K}^0)$ and $(B_{d,s}^0-\overline{B}_{d,s}^0)$ meson mixings, in the parameter space that currently satisfies the experimental constraints. On the other hand, due to the preserved $Z_2$ symmetry, our proposed models have stable scalar and fermionic dark matter candidates. Furthermore, these models are consistent with the current pattern of SM fermion masses and mixings, with the measured dark matter relic abundance and successfully accommodate the constraints arising from meson oscillations and oblique parameters. The extra scalars in our models provide radiative corrections to the oblique parameters, where due to the presence of the scalar inert doublet, renders the 4HDM less restrictive than the 3HDM one.
format Preprint
id arxiv_https___arxiv_org_abs_2212_12000
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Phenomenology of extended multiHiggs doublet models with $S_4$ family symmetry
Hernández, A. E. Cárcamo
Espinoza, Catalina
Gómez-Izquierdo, Juan Carlos
González, Juan Marchant
Mondragón, Myriam
High Energy Physics - Phenomenology
We propose extended 3HDM and 4HDM models where the SM gauge symmetry is enlarged by the spontaneously broken $S_4$ group, the preserved $Z_2$ and broken $Z_4$ cyclic symmetries. Each model has three active $SU(2)$ scalar doublets, in addition, the first one has an extra inert scalar singlet, whereas the second model has an inert scalar doublet. Furthermore, each model has several extra gauge singlet scalars, which are triplets under $S_4$. Both models yield the same structure of the mass matrices for the fermion sector, where a radiative seesaw generates the tiny light active neutrinos masses at one-loop level, through the $S_4$ triplets. The presence of flavor changing neutral currents mediated by heavy scalars allowed us to study the $(K^0-\overline{K}^0)$ and $(B_{d,s}^0-\overline{B}_{d,s}^0)$ meson mixings, in the parameter space that currently satisfies the experimental constraints. On the other hand, due to the preserved $Z_2$ symmetry, our proposed models have stable scalar and fermionic dark matter candidates. Furthermore, these models are consistent with the current pattern of SM fermion masses and mixings, with the measured dark matter relic abundance and successfully accommodate the constraints arising from meson oscillations and oblique parameters. The extra scalars in our models provide radiative corrections to the oblique parameters, where due to the presence of the scalar inert doublet, renders the 4HDM less restrictive than the 3HDM one.
title Phenomenology of extended multiHiggs doublet models with $S_4$ family symmetry
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2212.12000