Imprints of energy injection by compact dark stars in the 21-cm signal

Fuente: arXiv
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Auteurs principaux: Kamenetskaia, Boris Betancourt, Ibarra, Alejandro, Kouvaris, Chris
Format: Preprint
Publié: 2025
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author Kamenetskaia, Boris Betancourt
Ibarra, Alejandro
Kouvaris, Chris
author_facet Kamenetskaia, Boris Betancourt
Ibarra, Alejandro
Kouvaris, Chris
contents A strongly self-interacting component of asymmetric dark matter particles can form compact dark stars. The high dark matter density in these objects may allow significant dark matter annihilation into Standard Model particles, even when the portals to the visible sector are extremely weak. In this paper, we argue that compact dark stars could constitute an important source of energy injection during the cosmic dawn era in addition to that of the baryonic stars. Therefore, if dark stars annihilate into photons, the luminosity of dark stars may affect the reionization history of the Universe. We show that the evolution with the redshift of the temperature brightness of the 21-cm line could significantly deviate from the expectations of standard Cosmology, thus providing a new probe for particle dark matter.
format Preprint
id arxiv_https___arxiv_org_abs_2504_17064
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Imprints of energy injection by compact dark stars in the 21-cm signal
Kamenetskaia, Boris Betancourt
Ibarra, Alejandro
Kouvaris, Chris
High Energy Physics - Phenomenology
A strongly self-interacting component of asymmetric dark matter particles can form compact dark stars. The high dark matter density in these objects may allow significant dark matter annihilation into Standard Model particles, even when the portals to the visible sector are extremely weak. In this paper, we argue that compact dark stars could constitute an important source of energy injection during the cosmic dawn era in addition to that of the baryonic stars. Therefore, if dark stars annihilate into photons, the luminosity of dark stars may affect the reionization history of the Universe. We show that the evolution with the redshift of the temperature brightness of the 21-cm line could significantly deviate from the expectations of standard Cosmology, thus providing a new probe for particle dark matter.
title Imprints of energy injection by compact dark stars in the 21-cm signal
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2504.17064