Probing small-scale dark matter clumping with the large-scale 21-cm power spectrum

Fuente: arXiv
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Autori principali: Sikder, Sudipta, Park, Hyunbae, Barkana, Rennan, Yoshida, Naoki, Fialkov, Anastasia
Natura: Preprint
Pubblicazione: 2025
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author Sikder, Sudipta
Park, Hyunbae
Barkana, Rennan
Yoshida, Naoki
Fialkov, Anastasia
author_facet Sikder, Sudipta
Park, Hyunbae
Barkana, Rennan
Yoshida, Naoki
Fialkov, Anastasia
contents The 21-cm line of hydrogen is the most promising probe of the Dark Ages and Cosmic Dawn. We combine hydrodynamical simulations with a large-scale grid in order to calculate the effect of non-linear structure formation on the large-scale 21-cm power spectrum, focusing on redshifts $z=20-40$. As the clumping effect arises from small-scale density fluctuations, it offers a unique opportunity to probe the standard cold dark matter model in a new regime and thus potentially investigate the properties of dark matter. To this end, we also study a warm dark matter $-$ like model with a Gaussian cutoff on a scale of 50 kpc. We find that clumping has a significant impact on the large-scale 21-cm power spectrum. For example, for the Dark Ages case at $z=30$ and wavenumber $k=0.05$ Mpc$^{-1}$, small-scale clustering enhances the 21-cm power spectrum by $13\%$. Once Lyman-$α$ coupling kicks in due to the first stars, the 21-cm signal strengthens, and the effect of clumping grows; it suppresses the observable power spectrum at $z=20$ by a factor of two, while the cutoff model has less than half the clumping impact. The clumping effect is significantly higher than the sensitivity of the planned Square Kilometre Array (SKA) AA$^\star$ configuration, by up to a factor of 20 for standard cold dark matter, though detection will require separation from foregrounds and from astrophysical contributions to the 21-cm power spectrum.
format Preprint
id arxiv_https___arxiv_org_abs_2509_11175
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Probing small-scale dark matter clumping with the large-scale 21-cm power spectrum
Sikder, Sudipta
Park, Hyunbae
Barkana, Rennan
Yoshida, Naoki
Fialkov, Anastasia
Cosmology and Nongalactic Astrophysics
The 21-cm line of hydrogen is the most promising probe of the Dark Ages and Cosmic Dawn. We combine hydrodynamical simulations with a large-scale grid in order to calculate the effect of non-linear structure formation on the large-scale 21-cm power spectrum, focusing on redshifts $z=20-40$. As the clumping effect arises from small-scale density fluctuations, it offers a unique opportunity to probe the standard cold dark matter model in a new regime and thus potentially investigate the properties of dark matter. To this end, we also study a warm dark matter $-$ like model with a Gaussian cutoff on a scale of 50 kpc. We find that clumping has a significant impact on the large-scale 21-cm power spectrum. For example, for the Dark Ages case at $z=30$ and wavenumber $k=0.05$ Mpc$^{-1}$, small-scale clustering enhances the 21-cm power spectrum by $13\%$. Once Lyman-$α$ coupling kicks in due to the first stars, the 21-cm signal strengthens, and the effect of clumping grows; it suppresses the observable power spectrum at $z=20$ by a factor of two, while the cutoff model has less than half the clumping impact. The clumping effect is significantly higher than the sensitivity of the planned Square Kilometre Array (SKA) AA$^\star$ configuration, by up to a factor of 20 for standard cold dark matter, though detection will require separation from foregrounds and from astrophysical contributions to the 21-cm power spectrum.
title Probing small-scale dark matter clumping with the large-scale 21-cm power spectrum
topic Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2509.11175