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Probing the Large-scale Structure with 21 cm-Galaxy Cross-bispectrum: Estimates from Simulations and Forecasts for Upcoming Cosmological Surveys

2026/04/16 by Leon Noble, Suman Majumdar, Matteo Viel +8
Physics and Astronomy · #COSMIC cancer database #Cosmology and Gravitation Theories #Epoch (astronomy) #Galaxies: Formation, Evolution, Phenomena #Galaxy #Interferometry #Mode (computer interface) #Radio Astronomy Observations and Technology #Redshift #Residual #SIGNAL (programming language) #astro-ph.CO

paper · pdf · doi:10.3847/1538-4357/ae78d5

published in The Astrophysical Journal 1005(2), 218 (IOP Publishing)

openalex publication_date 2026/07/07 · openalex created_date 2026/07/08 · openalex updated_date 2026/08/05

Abstract

Abstract The redshifted 21 cm signal from the post-reionization epoch is highly non-Gaussian; thus, higher-order statistics, such as the bispectrum, are required to extract this non-Gaussian information. However, high signal-to-noise ratio (SNR) detection of the 21 cm auto-bispectrum will be hindered by the presence of residual systematics. Cross-correlating the 21 cm signal with galaxies offers a promising path to suppress this uncertainty from residual systematics and potentially increase the SNR. We present a comprehensive analysis of the H I -galaxy cross-bispectrum using the predictions of theoretical galaxy evolution models defined on large cosmological volumes. Our analysis includes the cross-bispectrum for different triangle sizes and shapes, as well as for different combinations of the H I and galaxy fields. We forecast the detectability of the 21 cm-galaxy cross-bispectrum at redshift z ≈ 1 with the Euclid-like galaxy survey and SKA-Mid observations in both the interferometric and single-dish modes of the survey. We find that the 21 cm-galaxy cross-bispectrum shows enhanced detectability compared to the 21 cm auto-bispectrum for all unique triangles in the interferometric mode of observations. We forecast a 10 σ detection of the cross-bispectrum for squeezed-limit triangles and a 100 σ detection for all shapes combined for scales of 0.2 Mpc −1 ≤ k 1 ≤ 0.9 Mpc −1 , with 100 hr of SKA-Mid observations per pointing. However, the detectability of the cross-bispectrum for large scales ( k 1 < 0.1 Mpc −1 ), which is accessible with the single-dish mode of the survey, is limited by cosmic variance. Additionally, the signal loss due to foreground removal further suppresses the detectability. Our analysis presents a first step toward an end-to-end analysis pipeline for the future 21 cm-galaxy cross-bispectrum observations.

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