English

Beyond optical depth: Future determination of ionization history from the CMB

Cosmology and Nongalactic Astrophysics 2020-01-31 v2

Abstract

We explore the fundamental limits to which reionization histories can be constrained using only large-scale cosmic microwave background (CMB) anisotropy measurements. The redshift distribution of the fractional ionization xe(z)x_e(z) affects the angular distribution of CMB polarization. We project constraints on the reionization history of the universe using low-noise full-sky temperature and E-mode measurements of the CMB. We show that the measured TE power spectrum, C^TE\hat C_\ell^\mathrm{TE}, has roughly one quarter of the constraining power of C^EE\hat C_\ell^\mathrm{EE} on the reionization optical depth τ\tau, and its addition improves the precision on τ\tau by 20% over using C^EE\hat C_\ell^\mathrm{EE} only. We also use a two-step reionization model with an additional high redshift step, parametrized by an early ionization fraction xeminx_e^\mathrm{min}, and a late reionization step at zrez_\mathrm{re}. We find that future high signal-to-noise measurements of the multipoles 10<2010\leqslant\ell<20 are especially important for breaking the degeneracy between xeminx_e^\mathrm{min} and zrez_\mathrm{re}. In addition, we show that the uncertainties on these parameters determined from a map with sensitivity 10μKarcmin10\,\mathrm{\mu K\,arcmin} are less than 5% larger than the uncertainties in the noiseless case, making this noise level a natural target for future large sky area E-mode measurements.

Keywords

Cite

@article{arxiv.1910.00590,
  title  = {Beyond optical depth: Future determination of ionization history from the CMB},
  author = {D. J. Watts and G. E. Addison and C. L. Bennett and J. L. Weiland},
  journal= {arXiv preprint arXiv:1910.00590},
  year   = {2020}
}

Comments

13 pages, 10 figures, matches version accepted by ApJ, corrected author information