The morphology of the redshifted 21-cm signal from the Cosmic Dawn

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Hauptverfasser: Ghara, Raghunath, Bag, Satadru, Zaroubi, Saleem, Majumdar, Suman
Format: Preprint
Veröffentlicht: 2023
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author Ghara, Raghunath
Bag, Satadru
Zaroubi, Saleem
Majumdar, Suman
author_facet Ghara, Raghunath
Bag, Satadru
Zaroubi, Saleem
Majumdar, Suman
contents The spatial fluctuations in the tomographic maps of the redshifted 21-cm signal from the Cosmic Dawn (CD) crucially depend on the size and distribution of the regions with gas temperatures larger than the radio background temperature. In this article, we study the morphological characteristics of such emission regions and their absorption counterparts using the shape diagnostic tool SURFGEN2. Using simulated CD brightness temperature cubes of the 21-cm signal, we find that the emission regions percolate at stages with the filling factor of the emission regions $FF_{\rm emi}\gtrsim 0.15$. Percolation of the absorption regions occurs for $FF_{\rm abs}\gtrsim 0.05$. The largest emission and absorption regions are topologically complex and highly filamentary for most parts of the CD. The number density of these regions as a function of the volume shows the power-law nature with the power-law indexes $\approx -2$ and $-1.6$ for the emission and absorption regions, respectively. Overall, the planarity, filamentarity and genus increase with the increase of the volume of both emission and absorption regions.
format Preprint
id arxiv_https___arxiv_org_abs_2308_00548
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle The morphology of the redshifted 21-cm signal from the Cosmic Dawn
Ghara, Raghunath
Bag, Satadru
Zaroubi, Saleem
Majumdar, Suman
Cosmology and Nongalactic Astrophysics
The spatial fluctuations in the tomographic maps of the redshifted 21-cm signal from the Cosmic Dawn (CD) crucially depend on the size and distribution of the regions with gas temperatures larger than the radio background temperature. In this article, we study the morphological characteristics of such emission regions and their absorption counterparts using the shape diagnostic tool SURFGEN2. Using simulated CD brightness temperature cubes of the 21-cm signal, we find that the emission regions percolate at stages with the filling factor of the emission regions $FF_{\rm emi}\gtrsim 0.15$. Percolation of the absorption regions occurs for $FF_{\rm abs}\gtrsim 0.05$. The largest emission and absorption regions are topologically complex and highly filamentary for most parts of the CD. The number density of these regions as a function of the volume shows the power-law nature with the power-law indexes $\approx -2$ and $-1.6$ for the emission and absorption regions, respectively. Overall, the planarity, filamentarity and genus increase with the increase of the volume of both emission and absorption regions.
title The morphology of the redshifted 21-cm signal from the Cosmic Dawn
topic Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2308.00548