English

Optical depth to reionization from perturbative 21cm clustering

Cosmology and Nongalactic Astrophysics 2022-10-05 v2

Abstract

The optical depth τ\tau is the least well determined parameter in the standard model of cosmology, and one whose precise value is important for both understanding reionization and for inferring fundamental physics from cosmological measurements. We forecast how well future epoch of reionization experiments could constraint τ\tau using a symmetries-based bias expansion that highlights the special role played by anisotropies in the power spectrum on large scales. Given a parametric model for the ionization evolution inspired by the physical behavior of more detailed reionization simulations, we find that future 21cm experiments could place tight constraints on the timing and duration of reionization and hence constraints on τ\tau that are competitive with proposed, space-based CMB missions provided they can measure k0.1hMpc1k\approx 0.1\,h\,\text{Mpc}^{-1} with a clean foreground wedge across redshifts spanning the most active periods of reionization, corresponding to ionization fractions 0.2x0.80.2 \lesssim x \lesssim 0.8. Significantly improving upon existing CMB-based measurements with next-generation 21cm surveys would require substantially longer observations (5\sim5 years) than standard O(1000hour)\mathcal{O}(1000 \,\,\text{hour}) integration times. Precise measurements of smaller scales will not improve constraints on τ\tau until a better understanding of the astrophysics of reionization is achieved. In the presence of noise and foregrounds even future 21cm experiments will struggle to constrain τ\tau if the ionization evolution deviates significantly from simple parametric forms.

Keywords

Cite

@article{arxiv.2205.11504,
  title  = {Optical depth to reionization from perturbative 21cm clustering},
  author = {Noah Sailer and Shi-Fan Chen and Martin White},
  journal= {arXiv preprint arXiv:2205.11504},
  year   = {2022}
}

Comments

published in JCAP

R2 v1 2026-06-24T11:26:02.004Z