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Forecasts on Primordial non-Gaussianity from 21 cm Intensity Mapping experiments

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arxiv 1911.03964 v3 pith:MFCICKKJ submitted 2019-11-10 astro-ph.CO

classification astro-ph.CO
keywords experimentsforegroundintensitymappingcurrentimprovelikemodel
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abstract

We forecast ability of dedicated 21 cm intensity mapping experiments to constraint primordial non-Gaussianity using power spectrum and bispectrum. We model the signal including the non-linear biasing expansion using a generalized halo model approach. We consider the importance of foreground filtering scale and of the foreground wedge. We find that the current generation intensity mapping experiments like CHIME do not posses sufficient sensitivity to be competitive with the existing limits. On the other hand, upcoming experiments like HIRAX can improve the current constraints and the proposed PUMA experiment can substantially improve them, reaching sensitivities below $\sigma (f_{\rm NL})<5$ for equilateral and orthogonal configurations and $\sigma( f_{\rm NL}) < 1$ for the local shape if good foreground control is achieved.

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Forward citations

Cited by 3 Pith papers

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  1. Simulation-Based Priors for HI Bias from Halo Occupation Physics

    astro-ph.CO 2026-07 conditional novelty 6.0 of 10

    A conditional normalizing flow learned from two simulation suites maps HI halo-occupation parameters to EFT bias parameters, producing correlated non-Gaussian priors that are much tighter than flat priors for 21 cm analyses.

  2. Beyond {\Lambda}CDM with the SKA Observatory -- II: Unveiling the Secrets of the Early Universe

    astro-ph.CO 2026-07 accept novelty 3.5 of 10

    Updated SKAO-AA4 forecasts show multi-tracer HI+galaxy analyses can reach σ(f_local_NL)≲1 and improve αs bounds by tens of percent when combined with future CMB, while foregrounds and GR light-cone effects remain the ...

  3. Cosmology with HI

    astro-ph.CO 2024-11 unverdicted

    A review chapter collecting the equations, data, and forecasts for using neutral hydrogen, through the 21 cm and Lyman-alpha lines, to measure the Universe.

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