Gravitational Wave Signatures of a Chiral Fermion Dark Matter Model

Fuente: arXiv
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Main Authors: Abe, Tomohiro, Babu, K. S., Kaladharan, Ajay
Format: Preprint
Published: 2023
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author Abe, Tomohiro
Babu, K. S.
Kaladharan, Ajay
author_facet Abe, Tomohiro
Babu, K. S.
Kaladharan, Ajay
contents Theories in which the dark matter (DM) candidate is a fermion transforming chirally under a gauge symmetry are attractive, as the gauge symmetry would protect the DM mass. In such theories, the universe would have undergone a phase transition at early times that generated the DM mass upon spontaneous breaking of the gauge symmetry. In this paper, we explore the gravitational wave signals of a simple such theory based on an $\mathrm{SU}(2)_\mathrm{D}$ dark sector with a dark isospin-$3/2$ fermion serving as the DM candidate. This is arguably the simplest chiral theory possible. The scalar sector consists of a dark isospin-$3$ multiplet which breaks the $\mathrm{SU}(2)_\mathrm{D}$ gauge symmetry and also generates the DM mass. We construct the full thermal potential of the model and identify regions of parameter space which lead to detectable gravitational wave signals, arising from a strong first-order $\mathrm{SU}(2)_\mathrm{D}$ phase transition, in various planned space-based interferometers, while also being consistent with dark matter relic abundance. Bulk of the parameter space exhibiting detectable gravitational wave signals in the model also has large WIMP-nucleon scattering cross sections, $σ_{\rm SI}$, which could be probed in upcoming direct detection experiments.
format Preprint
id arxiv_https___arxiv_org_abs_2312_17203
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Gravitational Wave Signatures of a Chiral Fermion Dark Matter Model
Abe, Tomohiro
Babu, K. S.
Kaladharan, Ajay
High Energy Physics - Phenomenology
Cosmology and Nongalactic Astrophysics
Theories in which the dark matter (DM) candidate is a fermion transforming chirally under a gauge symmetry are attractive, as the gauge symmetry would protect the DM mass. In such theories, the universe would have undergone a phase transition at early times that generated the DM mass upon spontaneous breaking of the gauge symmetry. In this paper, we explore the gravitational wave signals of a simple such theory based on an $\mathrm{SU}(2)_\mathrm{D}$ dark sector with a dark isospin-$3/2$ fermion serving as the DM candidate. This is arguably the simplest chiral theory possible. The scalar sector consists of a dark isospin-$3$ multiplet which breaks the $\mathrm{SU}(2)_\mathrm{D}$ gauge symmetry and also generates the DM mass. We construct the full thermal potential of the model and identify regions of parameter space which lead to detectable gravitational wave signals, arising from a strong first-order $\mathrm{SU}(2)_\mathrm{D}$ phase transition, in various planned space-based interferometers, while also being consistent with dark matter relic abundance. Bulk of the parameter space exhibiting detectable gravitational wave signals in the model also has large WIMP-nucleon scattering cross sections, $σ_{\rm SI}$, which could be probed in upcoming direct detection experiments.
title Gravitational Wave Signatures of a Chiral Fermion Dark Matter Model
topic High Energy Physics - Phenomenology
Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2312.17203