Exploring Fermionic Dark Matter in the Presence of Scalar Leptoquarks

Fuente: arXiv
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Main Authors: Dey, Shyamashish, Rai, Santosh Kumar
Format: Preprint
Published: 2025
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author Dey, Shyamashish
Rai, Santosh Kumar
author_facet Dey, Shyamashish
Rai, Santosh Kumar
contents We study an extension of the vector-like lepton dark matter model by introducing scalar leptoquarks that modify the properties of the vector-like lepton dark matter candidate, helping it evade stringent direct detection constraints. In the minimal setup, the neutral component of a pure $SU(2)$ doublet vector-like lepton fails to simultaneously account for the observed relic abundance while remaining consistent with current direct detection limits. We show that the addition of the scalar leptoquarks can induce corrections to the mass of the vector-like lepton dark matter, splitting it into two non-degenerate pseudo-Dirac states. This mass splitting can help evade the direct detection bounds naturally. In addition, the extended setup also opens up a larger parameter space of the model that can accommodate the correct relic density.
format Preprint
id arxiv_https___arxiv_org_abs_2509_02744
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Exploring Fermionic Dark Matter in the Presence of Scalar Leptoquarks
Dey, Shyamashish
Rai, Santosh Kumar
High Energy Physics - Phenomenology
We study an extension of the vector-like lepton dark matter model by introducing scalar leptoquarks that modify the properties of the vector-like lepton dark matter candidate, helping it evade stringent direct detection constraints. In the minimal setup, the neutral component of a pure $SU(2)$ doublet vector-like lepton fails to simultaneously account for the observed relic abundance while remaining consistent with current direct detection limits. We show that the addition of the scalar leptoquarks can induce corrections to the mass of the vector-like lepton dark matter, splitting it into two non-degenerate pseudo-Dirac states. This mass splitting can help evade the direct detection bounds naturally. In addition, the extended setup also opens up a larger parameter space of the model that can accommodate the correct relic density.
title Exploring Fermionic Dark Matter in the Presence of Scalar Leptoquarks
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2509.02744