Neutrino masses, anomalous magnetic moments and dark matter with vector-like fermions and an inert scalar doublet

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Main Author: Sahdev, Vandana
Format: Preprint
Published: 2024
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author Sahdev, Vandana
author_facet Sahdev, Vandana
contents The beyond-the-standard-model scenario in this work is motivated from the observations of neutrino masses, anomalous magnetic moments of electron and muon, and dark matter in the Universe. We explain these observations by extending the standard model with two generations of vector-like fermions and an inert scalar doublet, all odd under a $Z_2$ symmetry. The light neutrino masses and mixings are generated radiatively while maintaining consistency with bounds on lepton flavor violation. Loop diagrams with the very same fields also serve to explain the anomalous magnetic moments. Similarly, the correct dark matter relic abundance is reproduced without coming into conflict with direct detection constraints, or those from big bang nucleosynthesis or the cosmic microwave observations. Finally, prospective signatures at the LHC are discussed.
format Preprint
id arxiv_https___arxiv_org_abs_2411_11328
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Neutrino masses, anomalous magnetic moments and dark matter with vector-like fermions and an inert scalar doublet
Sahdev, Vandana
High Energy Physics - Phenomenology
The beyond-the-standard-model scenario in this work is motivated from the observations of neutrino masses, anomalous magnetic moments of electron and muon, and dark matter in the Universe. We explain these observations by extending the standard model with two generations of vector-like fermions and an inert scalar doublet, all odd under a $Z_2$ symmetry. The light neutrino masses and mixings are generated radiatively while maintaining consistency with bounds on lepton flavor violation. Loop diagrams with the very same fields also serve to explain the anomalous magnetic moments. Similarly, the correct dark matter relic abundance is reproduced without coming into conflict with direct detection constraints, or those from big bang nucleosynthesis or the cosmic microwave observations. Finally, prospective signatures at the LHC are discussed.
title Neutrino masses, anomalous magnetic moments and dark matter with vector-like fermions and an inert scalar doublet
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2411.11328