English

HI Signal from Reionization Epoch

Astrophysics 2009-11-13 v1

Abstract

We investigate the all-sky signal in redshifted atomic hydrogen (HI) line from the reionization epoch. HI can be observed in both emission and absorption depending on the ratio of Lyman-α\alpha to ionizing flux and the spectrum of the radiation in soft xray. We also compute the signal from pre-reionization epoch and show that within the uncertainty in cosmological parameters, it is fairly robust. The main features of HI signal can be summarized as: (a) The pre-ionized HI can be seen in absorption for ν1040MHz\nu \simeq 10\hbox{--}40 \rm MHz; the maximum signal strength is 70100mK\simeq 70\hbox{--}100 \rm mK. (b) A sharp absorption feature of width \la5MHz\la 5 \rm MHz might be observed in the frequency range 50100MHz\simeq 50 \hbox{--}100 \rm MHz, depending on the reionization history. The strength of the signal is proportional to the ratio of the Lyman-α\alpha and the hydrogen-ionizing flux and the spectral index of the radiation field in soft xray (c) At larger frequencies, HI is seen in emission with peak frequency between 60100MHz60\hbox{--}100 \rm MHz, depending on the ionization history of the universe; the peak strength of this signal is 50mK\simeq 50 \rm mK. From Fisher matrix analysis, we compute the precision with which the parameters of the model can be estimated from a future experiment: (a) the pre-reionization signal can constrain a region in the Ωbh2\Omega_b h^2--Ωmh2\Omega_m h^2 plane (b) HI observed in emission can be used to give precise, \la1\la 1 %, measurement of the evolution of the ionization fraction in the universe, and (c) the transition region from absorption to emission can be used as a probe of the spectrum of ionizing sources; in particular, the HI signal in this regime can give reasonably precise measurement of the fraction of the universe heated by soft x-ray photons.

Keywords

Cite

@article{arxiv.astro-ph/0508172,
  title  = {HI Signal from Reionization Epoch},
  author = {Shiv K. Sethi},
  journal= {arXiv preprint arXiv:astro-ph/0508172},
  year   = {2009}
}

Comments

20 pages, 9 figures, accepted for publication in MNRAS

R2 v1 2026-07-22T08:55:19.279Z