Baryogenesis and Dark Matter from light Sterile Neutrinos

Fuente: arXiv
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Main Authors: Arcadi, G., Garcés, J. P., Lindner, M.
Format: Preprint
Published: 2026
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author Arcadi, G.
Garcés, J. P.
Lindner, M.
author_facet Arcadi, G.
Garcés, J. P.
Lindner, M.
contents We propose a simple and flexible mechanism by which sterile neutrinos with masses below the electroweak scale can simultaneously account for the observed baryon asymmetry of the Universe and the dark matter abundance. Crucially, neutrinos in this mass range behave as Dirac particles at high temperatures, allowing connections to Dirac leptogenesis, while at low temperatures, they can serve as viable warm dark matter candidates. We first perform a general analysis, assuming that unspecified ultraviolet dynamics generate both symmetric and asymmetric sterile-neutrino abundances before decoupling. Treating these abundances as initial conditions for the subsequent evolution allows us to systematically explore the phenomenologically viable regions of the low-energy parameter space, taking into account cosmological and astrophysical constraints, as well as implications for light-neutrino mass generation. Finally, we illustrate the model-building opportunities enabled by this minimal setup by studying two specific ultraviolet completions.
format Preprint
id arxiv_https___arxiv_org_abs_2603_19407
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Baryogenesis and Dark Matter from light Sterile Neutrinos
Arcadi, G.
Garcés, J. P.
Lindner, M.
High Energy Physics - Phenomenology
We propose a simple and flexible mechanism by which sterile neutrinos with masses below the electroweak scale can simultaneously account for the observed baryon asymmetry of the Universe and the dark matter abundance. Crucially, neutrinos in this mass range behave as Dirac particles at high temperatures, allowing connections to Dirac leptogenesis, while at low temperatures, they can serve as viable warm dark matter candidates. We first perform a general analysis, assuming that unspecified ultraviolet dynamics generate both symmetric and asymmetric sterile-neutrino abundances before decoupling. Treating these abundances as initial conditions for the subsequent evolution allows us to systematically explore the phenomenologically viable regions of the low-energy parameter space, taking into account cosmological and astrophysical constraints, as well as implications for light-neutrino mass generation. Finally, we illustrate the model-building opportunities enabled by this minimal setup by studying two specific ultraviolet completions.
title Baryogenesis and Dark Matter from light Sterile Neutrinos
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2603.19407