Effect of Void Network on CMB Anisotropy
Abstract
We study the effect of a void network on the CMB anisotropy in the Einstein-de Sitter background using Thompson &Vishniac's model. We consider comprehensively the Sacks-Wolfe effect, the Rees-Sciama effect and the gravitational lensing effect. Our analysis includes the model of primordial voids existing at recombination, which is realized in some inflationary models associated with a first-order phase transition. If there exist primordial voids whose comoving radius is larger than Mpc at recombination, not only the Sachs-Wolfe effect but also the Rees-Sciama effect is appreciable even for multipoles of the anisotropy spectrum. The gravitational lensing effect, on the other hand, slightly smoothes the primary anisotropy; quantitatively, our results for the void model are similar to the previous results for a CDM model. All the effects, together, would give some constraints on the configuration or origin of voids with high-resolution data of the CMB anisotropy.
Cite
@article{arxiv.astro-ph/9712153,
title = {Effect of Void Network on CMB Anisotropy},
author = {Nobuyuki Sakai and Naoshi Sugiyama and Jun'ichi Yokoyama},
journal= {arXiv preprint arXiv:astro-ph/9712153},
year = {2009}
}
Comments
23 pages, latex, 12 eps figures, some calculations and discussions are added, to appear in ApJ 510 (1999)