The ultimate frontier of 21cm cosmology
Abstract
We present the most detailed computation to date of the 21-cm global signal and fluctuations at . Our calculations include a highly precise estimate of the Wouthuysen-Field (WF) effect and the first explicit calculation of the impact of free-free processes, the two dominant components of the signal at . We implement a new high-resolution Ly radiative transfer calculation, coupled to a state-of-the-art primordial recombination code. Using these tools, we find a global signal from 21-cm processes alone of roughly 0.01mK at , slightly larger than it would be without the WF effect, but much weaker than previous estimates including this effect. We also find that this signal is swamped by a smooth mK signal due to free-free absorption at high redshift by the partially ionized gas along the line of sight. In addition, we estimate the amplitude of 21-cm fluctuations, of order mK at . Unfortunately, we find that due to the brightness of the low-frequency sky, these fluctuations will not be observable beyond a few hundred by even extremely futuristic observations. The 21 cm fluctuations are exponentially suppressed at higher redshifts by the large free-free optical depth, making this the ultimate upper redshift limit for 21-cm surveys.
Keywords
Cite
@article{arxiv.1804.10626,
title = {The ultimate frontier of 21cm cosmology},
author = {Patrick C. Breysse and Yacine Ali-Haïmoud and Christopher M. Hirata},
journal= {arXiv preprint arXiv:1804.10626},
year = {2018}
}
Comments
14 pages, 9 figures, submitted to PRD