Cosmological and Astrophysical Parameter Measurements with 21-cm Anisotropies During the Era of Reionization
arXiv:astro-ph/0605677 · doi:10.1103/PhysRevD.74.083517
Abstract
We study the prospects for extracting cosmological and astrophysical parameters from the low radio frequency 21-cm background due to the spin-flip transition of neutral Hydrogen during and prior to the reionization of the Universe. We make use of the angular power spectrum of 21-cm anisotropies, which exists due to inhomogeneities in the neutral Hydrogen density field, the gas temperature field, the gas velocity field, and the spatial distribution of the Lyman- intensity field associated with first luminous sources that emit UV photons. We extract parameters that describe both the underlying mass power spectrum and the global cosmology, as well as a set of simplified astrophysical parameters that connect fluctuations in the dark matter to those that govern 21-cm fluctuations. We also marginalize over a model for the foregrounds at low radio frequencies. In this general description, we find large degeneracies between cosmological parameters and the astrophysical parameters, though such degeneracies are reduced when strong assumptions are made with respect to the spin temperature relative to the CMB temperature or when complicated sources of anisotropy in the brightness temperature are ignored. Some of the degeneracies between cosmological and astrophysical parameters are broken when 21-cm anisotropy measurements are combined with information from the CMB, such as the temperature and the polarization measurements with Planck. While the overall improvement on the cosmological parameter estimates is not significant when measurements from first-generation interferometers are combined with Planck, such a combination can measure astrophysical parameters such as the ionization fraction in several redshift bins with reasonable accuracy.
20 pages, 13 figures and 10 tables. Minor changes to match version accepted by Phys.Rev.D
References in corpus (3)
Cited by in corpus (12)
- How accurately can 21 cm tomography constrain cosmology?
- 21 cm fluctuations from inhomogeneous X-ray heating before reionization
- A Method for 21cm Power Spectrum Estimation in the Presence of Foregrounds
- An Improved Method for 21cm Foreground Removal
- Cosmic Reionization and the 21-cm signal: Comparison between an analytical model and a simulation
- Will point sources spoil 21 cm tomography?
- A Fast Method for Power Spectrum and Foreground Analysis for 21 cm Cosmology
- The trispectrum of 21-cm background anisotropies as a probe of primordial non-Gaussianity
- Cross-correlation studies as a probe of reionization physics
- Universal Weak Lensing Distortion of Cosmological Correlation Functions
- It's Always Darkest Before the Cosmic Dawn: Early Results from Novel Tools and Telescopes for 21 cm Cosmology
- Simulating a full-sky high resolution Galactic synchrotron spectral index map using neural networks