Extending the LCDM model through shear-free anisotropies
Abstract
If the spacetime metric has anisotropic spatial curvature, one can afford to expand the universe isotropically, provided that the energy-momentum tensor satisfy a certain con- straint. This leads to the so-called shear-free metrics, which have the interesting property of violating the cosmological principle while still preserving the isotropy of the cosmic mi- crowave background (CMB) radiation. In this work we show that shear-free cosmologies correspond to an attractor solution in the space of models with anisotropic spatial curva- ture. Through a rigorous definition of linear perturbation theory in these spacetimes, we show that shear-free models represent a viable alternative to describe the large-scale evo- lution of the universe, leading, in particular, to a kinematically equivalent Sachs-Wolfe effect. Alternatively, we discuss some specific signatures that shear-free models would imprint on the temperature spectrum of CMB.
Cite
@article{arxiv.1603.04291,
title = {Extending the LCDM model through shear-free anisotropies},
author = {Thiago S. Pereira and Davincy T. Pabon},
journal= {arXiv preprint arXiv:1603.04291},
year = {2016}
}
Comments
12 pages, 2 figures. Proceedings of the 1st Workshop on Inflation and the Origin of the CMB Anomalies held at Cali -- Colombia, May 2015