English

Studying the Multi-frequency Angular Power Spectrum of the Cosmic Dawn 21-cm Signal

Cosmology and Nongalactic Astrophysics 2023-04-26 v2 Instrumentation and Methods for Astrophysics

Abstract

The light-cone (LC) anisotropy arises due to cosmic evolution of the cosmic dawn 21-cm signal along the line-of-sight (LoS) axis of the observation volume. The LC effect makes the signal statistically non-ergodic along the LoS axis. The multi-frequency angular power spectrum (MAPS) provides an unbiased alternative to the popular 3D power spectrum as it does not assume statistical ergodicity along every direction in the signal volume. Unlike the 3D power spectrum which mixes the cosmic evolution of the 21-cm signal along the LoS kk modes, MAPS keeps the evolution information disentangled. Here we first study the impact of different underlying physical processes during cosmic dawn on the behaviour of the 21-cm MAPS using simulations of various different scenarios and models. We also make error predictions in 21-cm MAPS measurements considering only the system noise and cosmic variance for mock observations of HERA, NenuFAR and SKA-Low. We find that 100 h100~{\rm h} of HERA observations will be able to measure 21-cm MAPS at 3σ\geq 3\sigma for 1000\ell \lesssim 1000 with 0.1MHz0.1\,{\rm MHz} channel-width. The better sensitivity of SKA-Low allows reaching this sensitivity up to 3000\ell \lesssim 3000. Note that due to the difference in the frequency coverage of the various experiements, the CD-EoR model considered for NenuFAR is different than those used for the HERA and SKA-Low predictions. Considering NenuFAR with the new model, measurements 2σ\geq 2\sigma are possible only for 600\ell \lesssim 600 with 0.2MHz0.2\,{\rm MHz} channel-width and for a ten times longer observation time of tobs=1000 ht_{\rm obs} = 1000~{\rm h}. However, for the range 300600300 \lesssim \ell \lesssim 600 and tobs=1000 ht_{\rm obs}=1000~{\rm h} more than 3σ3\sigma measurements are still possible for NenuFAR when combining consecutive frequency channels within a 5 MHz5 ~{\rm MHz} band.

Keywords

Cite

@article{arxiv.2302.01127,
  title  = {Studying the Multi-frequency Angular Power Spectrum of the Cosmic Dawn 21-cm Signal},
  author = {Abinash Kumar Shaw and Raghunath Ghara and Saleem Zaroubi and Rajesh Mondal and Garrelt Mellema and Florent Mertens and Léon V. E. Koopmans and Benoît Semelin},
  journal= {arXiv preprint arXiv:2302.01127},
  year   = {2023}
}

Comments

21 pages, 12 figures, 3 tables, accepted for publication in MNRAS