arXiv · 2412.08852
Scalar perturbations on the normal and self-accelerating branch of a DGP brane and $\sigma_8$
Abstract
In this work we constrain the value of $\sigma_8$ for the normal and self-accelerating branch of a DGP brane embedded in a five-dimensional Minkowski space-time. For that purpose we first constrain the model parameters $H_0$, $\Omega_{m0}$, $\Omega_{r0}$ and $M$ by means of the Pantheon+ catalog and a mock catalog of gravitational waves. Then, we solve numerically the equation for dark matter scalar perturbations using the dynamical scaling solution for the master equation and assuming that $p=4$ for the matter dominated era. Finally, we found that the evolution of matter density perturbations in both branches is different from the $\Lambda$CDM model and that the value of $\sigma_8=0.774\pm0.027$ for the normal branch and $\sigma_8=0.913\pm0.032$ for the self-accelerating branch.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Maribel Hernández-Márquez, Celia Escamilla-Rivera. 2024-12-12. Scalar perturbations on the normal and self-accelerating branch of a DGP brane and $\sigma_8$. https://arxiv.org/abs/2412.08852
Cite the original work for its findings. Save a collection to share your selection of sources.