English

Modeling the Nonlinear Power Spectrum in Low-redshift HI Intensity Mapping

Cosmology and Nongalactic Astrophysics 2024-07-03 v1 Astrophysics of Galaxies

Abstract

We present a simulation-based framework to forecast the HI power spectrum on non-linear scales (k1 Mpc1k\gtrsim 1\ {\rm Mpc^{-1}}), as measured by interferometer arrays like MeerKAT in the low-redshift (z1.0z\leq 1.0) universe. Building on a galaxy-based HI mock catalog, we meticulously consider various factors, including the emission line profiles of HI discs and some observational settings, and explore their impacts on the HI power spectrum. While it is relatively insensitive to the profile shape of HI emission line at these scales, we identify a strong correlation with the profile width, that is, the Full Width at Half Maxima (FWHM, also known as W50W_{\rm 50} in observations) in this work. By modeling the width function of W50W_{50} as a function of vmaxv_{\rm max}, we assign each HI source a emission line profile and find that the resulting HI power spectrum is comparatively close to results from particles in the IllustrisTNG hydrodynamical simulation. After implementing kk-space cuts matching the MeerKAT data, our prediction replicates the trend of the measurements obtained by MeerKAT at z0.44z\approx 0.44, though with a significantly lower amplitude. Utilizing a Monte Carlo Markov Chain sampling method, we constrain the parameter AW50A_{W_{\rm 50}} in the W50W_{\rm 50} models and ΩHI\Omega_{\rm HI} with the MeerKAT measurements and find that a strong degeneracy exists between these two parameters.

Keywords

Cite

@article{arxiv.2407.02131,
  title  = {Modeling the Nonlinear Power Spectrum in Low-redshift HI Intensity Mapping},
  author = {Zhixing Li and Laura Wolz and Hong Guo and Steven Cunnington and Yi Mao},
  journal= {arXiv preprint arXiv:2407.02131},
  year   = {2024}
}
R2 v1 2026-06-28T17:26:20.215Z