Cosmological constraints on TeV-scale dark matter subcomponents decaying between recombination and reionisation

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Main Authors: Mosbech, Markus R., Benso, Cristina, Kahlhoefer, Felix
Format: Preprint
Published: 2026
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author Mosbech, Markus R.
Benso, Cristina
Kahlhoefer, Felix
author_facet Mosbech, Markus R.
Benso, Cristina
Kahlhoefer, Felix
contents The Dark Ages and the Cosmic Dawn are an untapped well of information about the particle physics properties of dark matter, which may become accessible with future radio telescopes able to probe the 21-cm signal from atomic hydrogen. In this work we study the impact on cosmological observables of a dark matter subcomponent composed of TeV-scale particles that decay into electrons, photons or neutrinos with a lifetime shorter than the age of the universe. We re-evaluate constraints from the Cosmic Microwave Background (CMB) on these scenarios using the most recent data sets and estimate the sensitivity of future detections of the global 21-cm signal. Our main result is that the latter is potentially more sensitive to the effects of decaying dark matter with a lifetime $τ\gtrsim 10^{15} \, \mathrm{s}$. This effect is strongest for the case of decays into neutrinos due to the different spectral distribution of the injected electromagnetic energy. For DM masses well above the TeV-scale, these differences become less pronounced and the sensitivity of both the CMB and the 21-cm signal depend primarily on the total amount of injected electromagnetic energy.
format Preprint
id arxiv_https___arxiv_org_abs_2604_19198
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Cosmological constraints on TeV-scale dark matter subcomponents decaying between recombination and reionisation
Mosbech, Markus R.
Benso, Cristina
Kahlhoefer, Felix
Cosmology and Nongalactic Astrophysics
High Energy Physics - Phenomenology
The Dark Ages and the Cosmic Dawn are an untapped well of information about the particle physics properties of dark matter, which may become accessible with future radio telescopes able to probe the 21-cm signal from atomic hydrogen. In this work we study the impact on cosmological observables of a dark matter subcomponent composed of TeV-scale particles that decay into electrons, photons or neutrinos with a lifetime shorter than the age of the universe. We re-evaluate constraints from the Cosmic Microwave Background (CMB) on these scenarios using the most recent data sets and estimate the sensitivity of future detections of the global 21-cm signal. Our main result is that the latter is potentially more sensitive to the effects of decaying dark matter with a lifetime $τ\gtrsim 10^{15} \, \mathrm{s}$. This effect is strongest for the case of decays into neutrinos due to the different spectral distribution of the injected electromagnetic energy. For DM masses well above the TeV-scale, these differences become less pronounced and the sensitivity of both the CMB and the 21-cm signal depend primarily on the total amount of injected electromagnetic energy.
title Cosmological constraints on TeV-scale dark matter subcomponents decaying between recombination and reionisation
topic Cosmology and Nongalactic Astrophysics
High Energy Physics - Phenomenology
url https://arxiv.org/abs/2604.19198