Sterile neutrinos, dark matter and Standard Model extended by right-handed neutrinos

Fuente: arXiv
Guardado en:
Detalles Bibliográficos
Autores principales: Serebrov, A. P., Samoilov, R. M., Zherebtsov, O. M., Budanov, N. S.
Formato: Preprint
Publicado: 2023
Materias:
Acceso en línea:
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
_version_ 1866913321480880128
author Serebrov, A. P.
Samoilov, R. M.
Zherebtsov, O. M.
Budanov, N. S.
author_facet Serebrov, A. P.
Samoilov, R. M.
Zherebtsov, O. M.
Budanov, N. S.
contents Joint analysis of the results of the Neutrino-4 experiment and the data of the GALLEX, SAGE and BEST experiments confirms the parameters of neutrino oscillations declared by the Neutrino-4 experiment $(Δm_{14}^2= 7.3 \text{eV}^2$ and $\sin^2 2θ_{14} \approx 0.36)$ and increases the confidence level to $5.8σ$. Such a sterile neutrino thermalizes in cosmic plasma, contributes 5% to the energy density of the Universe, and can explain 15-20% of dark matter. It is discussed that the extension of the neutrino model by introducing two more heavy sterile neutrinos in accordance with the number of types of active neutrinos but with very small mixing angles to avoid thermalization will make it possible to explain the large-scale structure of the Universe and bring the contribution of sterile neutrinos to the dark matter of the Universe to the level of 27%. Sterile neutrinos are essentially right-handed neutrinos. The dynamic process of the dark matter generation, consisting of three right-handed neutrinos, is presented. Expansion of the Standard Model by introducing right-handed neutrinos seems possible. The scheme of masses and the scheme of mixing flavors are considered.
format Preprint
id arxiv_https___arxiv_org_abs_2306_09962
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Sterile neutrinos, dark matter and Standard Model extended by right-handed neutrinos
Serebrov, A. P.
Samoilov, R. M.
Zherebtsov, O. M.
Budanov, N. S.
High Energy Physics - Phenomenology
Joint analysis of the results of the Neutrino-4 experiment and the data of the GALLEX, SAGE and BEST experiments confirms the parameters of neutrino oscillations declared by the Neutrino-4 experiment $(Δm_{14}^2= 7.3 \text{eV}^2$ and $\sin^2 2θ_{14} \approx 0.36)$ and increases the confidence level to $5.8σ$. Such a sterile neutrino thermalizes in cosmic plasma, contributes 5% to the energy density of the Universe, and can explain 15-20% of dark matter. It is discussed that the extension of the neutrino model by introducing two more heavy sterile neutrinos in accordance with the number of types of active neutrinos but with very small mixing angles to avoid thermalization will make it possible to explain the large-scale structure of the Universe and bring the contribution of sterile neutrinos to the dark matter of the Universe to the level of 27%. Sterile neutrinos are essentially right-handed neutrinos. The dynamic process of the dark matter generation, consisting of three right-handed neutrinos, is presented. Expansion of the Standard Model by introducing right-handed neutrinos seems possible. The scheme of masses and the scheme of mixing flavors are considered.
title Sterile neutrinos, dark matter and Standard Model extended by right-handed neutrinos
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2306.09962