Small‐Scale Cosmic Microwave Background Temperature and Polarization Anisotropies Due to Patchy Reionization
Mário G. Santos, Asantha Roshan Cooray, Zoltán Haiman, Lloyd Knox, Chung‐Pei Ma
Abstract
Open-access reader
Mário G. Santos, Asantha Roshan Cooray, Zoltán Haiman, Lloyd Knox, Chung‐Pei Ma
Abstract
Open-access reader
We study contributions from inhomogeneous (patchy) reionization to arcminute-scale (1000 < l < 10,000) cosmic microwave background (CMB) anisotropies. We show that inhomogeneities in the ionization fraction, rather than in the mean density, dominate both the temperature and the polarization power spectra. Depending on the ionization history and the clustering bias of the ionizing sources, we find that rms temperature fluctuations range from 2 to 8 μK and the corresponding values for polarization are over 2 orders of magnitude smaller. Reionization can significantly bias cosmological parameter estimates and degrade gravitational lensing potential reconstruction from temperature maps but not from polarization maps. We demonstrate that a simple modeling of the reionization temperature power spectrum may be sufficient to remove the parameter bias. The high- l temperature power spectrum will contain some limited information about the sources of reionization.
OpenAlex reports 140 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
We study contributions from inhomogeneous (patchy) reionization to arcminute-scale (1000 < l < 10,000) cosmic microwave background (CMB) anisotropies. We show that inhomogeneities in the ionization fraction, rather than in the mean density, dominate both the temperature and the polarization power spectra. Depending on the ionization history and the clustering bias of the ionizing sources, we find that rms temperature fluctuations range from 2 to 8 μK and the corresponding values for polarization are over 2 orders of magnitude smaller. Reionization can significantly bias cosmological parameter estimates and degrade gravitational lensing potential reconstruction from temperature maps but not from polarization maps. We demonstrate that a simple modeling of the reionization temperature power spectrum may be sufficient to remove the parameter bias. The high- l temperature power spectrum will contain some limited information about the sources of reionization.
Key concepts: Reionization, Cosmic microwave background, Physics, Astrophysics, Spectral density, Anisotropy, Polarization (electrochemistry), Ionization