Statistical Detection of IGM Structures during Cosmic Reionization using Absorption of the Redshifted 21 cm line by HI against Compact Background Radio Sources
arXiv:2006.10070 · doi:10.3847/1538-4357/ab9e6d
Abstract
Detecting neutral hydrogen structures in the intergalactic medium (IGM) during cosmic reionization via absorption (21 cm forest) against a background radiation is considered independent and complementary to the three-dimensional tomography and power spectrum techniques. The direct detection of this absorption requires very bright (-100 mJy) background sources at high redshifts (), which are evidently rare; very long times of integration; or instruments of very high sensitivity. This motivates a statistical one-dimensional (1D) power spectrum approach along narrow sightlines but with fainter background objects (-10 mJy), which are likely to be more abundant and significant contributors at high redshifts. The 1D power spectrum reduces cosmic variance and improves sensitivity especially on small spatial scales. Using standard radiative transfer and fiducial models for the instrument, the background sources, and the evolution of IGM structures during cosmic reionization, the potential of the 1D power spectrum along selected narrow directions is investigated against uncertainties from thermal noise and the chromatic synthesized point spread function (PSF) response. Minimum requirements on the number of high-redshift background sources, the telescope sensitivity, and the PSF quality are estimated for a range of instrumental, background source, and reionization model parameters. The 1D power spectrum is intrinsically stronger at higher redshifts. A hr observing campaign targeting narrow sightlines to radio-faint, high-redshift background objects with modern radio telescopes, especially the Square Kilometre Array, can detect the 1D power spectrum on a range of spatial scales and redshifts, and potentially discriminate between models of cosmic reionization.
27 pages, 18 figures (including subfigures), published in the Astrophysical Journal
References in corpus (26)
- The NumPy array: a structure for efficient numerical computation
- Cosmology at Low Frequencies: The 21 cm Transition and the High-Redshift Universe
- The Pan-STARRS1 distant z>5.6 quasar survey: more than 100 quasars within the first Gyr of the universe
- The Last of FIRST: The Final Catalog and Source Identifications
- The Epoch of Reionization Window: I. Mathematical Formalism
- The Epoch of Reionization Window: II. Statistical Methods for Foreground Wedge Reduction
- A Method for 21cm Power Spectrum Estimation in the Presence of Foregrounds
- Detecting the Rise and Fall of 21 cm Fluctuations with the Murchison Widefield Array
- An Improved Method for 21cm Foreground Removal
- Constraining the radio-loud fraction of quasars at z>5.5
- Results from EDGES High-Band: I. Constraints on Phenomenological Models for the Global cm Signal
- Characterizing Foreground for redshifted 21-cm radiation: 150 MHz GMRT observations
- Anticipated Performance of the Square Kilometre Array -- Phase 1 (SKA1)
- A Fast Method for Power Spectrum and Foreground Analysis for 21 cm Cosmology
- Results from EDGES High-Band: III. New Constraints on Parameters of the Early Universe
- Studying Turbulence from Doppler-broadened Absorption Lines: Statistics of Logarithms of Intensity
- SARAS measurement of the Radio Background at long wavelengths
- Modelling the luminosities and sizes of radio galaxies: radio luminosity function at z = 6
- The 21 Centimeter Forest
- Science with the Murchison Widefield Array: Phase I Results and Phase II Opportunities
- A search for faint high-redshift radio galaxy candidates at 150 MHz
- A search for HI 21cm absorption toward the highest redshift radio loud objects
- A Tapered Gridded Estimator (TGE) for the Multi-Frequency Angular Power Spectrum (MAPS) and the Cosmological HI 21-cm Power Spectrum
- Detection of Cosmic Structures using the Bispectrum Phase. II. First Results from Application to Cosmic Reionization Using the Hydrogen Epoch of Reionization Array
- The Expanded Giant Metrewave Radio Telescope
- Detection of Cosmic Structures using the Bispectrum Phase. I. Mathematical Foundations