Structure and dynamics in low density regions: galaxy-galaxy correlations inside cosmic voids
Abstract
We compute the galaxy-galaxy correlation function of low-luminosity SDSS-DR7 galaxies inside cosmic voids identified in a volume limited sample of galaxies at . To identify voids, we use bright galaxies with . We find that structure in voids as traced by faint galaxies is mildly non-linear as compared with the general population of galaxies with similar luminosities. This implies a redshift-space correlation function with a similar shape than the real-space correlation albeit a normalization factor. The redshift space distortions of void galaxies allow to calculate pairwise velocity distributions which are consistent with an exponential model with a pairwise velocity dispersion of km/s, significantly lower than the global value of km/s. We also find that the internal structure of voids as traced by faint galaxies is independent of void environment, namely the correlation functions of galaxies residing in void-in-void or void-in-shell regions are identical within uncertainties. We have tested all our results with the semi-analytic catalogue MDPL2-\textsc{Sag} finding a suitable agreement with the observations in all topics studied.
Cite
@article{arxiv.1812.05532,
title = {Structure and dynamics in low density regions: galaxy-galaxy correlations inside cosmic voids},
author = {Andrés N. Ruiz and Ignacio G. Alfaro and Diego Garcia Lambas},
journal= {arXiv preprint arXiv:1812.05532},
year = {2023}
}
Comments
Submitted to MNRAS, comments are welcome