CMB Anisotropy in Compact Hyperbolic Universes
Abstract
Measurements of CMB anisotropy are ideal experiments for discovering the non-trivial global topology of the universe. To evaluate the CMB anisotropy in multiply-connected compact cosmological models, one needs to compute eigenmodes of the Laplace-Beltrami operator. We numerically obtain the eigenmodes on a compact 3-hyperbolic space cataloged as in SnapPea (computer program by Jeff Weeks) using the direct boundary element method, which enables one to simulate the CMB in multiply-connected compact models with high precision. The angular power spectra 's () are calculated using computed eigenmodes for and Gaussian random approximation for the expansion coefficients for . Assuming that the initial power spectrum is the Harrison-Zeldovich spectrum, the computed 's are consistent with the COBE data for . In low models, the large-angular fluctuations can be produced at periods after the last scattering as the curvature perturbations decay in the curvature dominant era.
Keywords
Cite
@article{arxiv.astro-ph/9903446,
title = {CMB Anisotropy in Compact Hyperbolic Universes},
author = {Kaiki Taro Inoue},
journal= {arXiv preprint arXiv:astro-ph/9903446},
year = {2007}
}
Comments
4 pages, 1 EPS figure, to appear in AIP Conference Proceedings "3K Cosmology" held in Rome, Oct 5-10, 1998, edited by Luciano Maiani, Francesco Melchiorri and Nicola Vittorio, 343-347, New York, American Institute of Physics 1999