In this study, we probe the transition to cosmic homogeneity in the Large Scale Structure (LSS) of the Universe using the CMASS galaxy sample of BOSS spectroscopic survey which covers the largest effective volume to date, 3h−3Gpc3 at 0.43≤z≤0.7. We study the scaled counts-in-spheres, N(<r), and the fractal correlation dimension, D2(r), to assess the homogeneity scale of the universe using a Landy&Szalay inspired estimator. Defining the scale of transition to homogeneity as the scale at which D2(r) reaches 3 within 1%, i.e. D2(r)>2.97 for r>RH, we find RH=(63.3±0.7)h−1Mpc, in agreement at the percentage level with the predictions of the ΛCDM model RH=62.0h−1Mpc. Thanks to the large cosmic depth of the survey, we investigate the redshift evolution of the transition to homogeneity scale and find agreement with the ΛCDM prediction. Finally, we find that D2 is compatible with 3 at scales larger than 300h−1Mpc in all redshift bins. These results consolidate the Cosmological Principle and represent a precise consistency test of the ΛCDM model.
@article{arxiv.1702.02159,
title = {Exploring cosmic homogeneity with the BOSS DR12 galaxy sample},
author = {Pierros Ntelis and Jean-Christophe Hamilton and Jean-Marc Le Goff and Nicolas Guillermo Busca and Eric Aubourg and Pierre Laurent and James Rich and Etienne Burtin and Hélion du Mas des Bourboux and Nathalie Palanque Delabrouille and Christophe Yeche and David W. Hogg and Adam Myers and Jeremy Tinker and Julian Bautista and Timothée Delubac and Graziano Rossi and Donald P. Schneider Rita Toheiro and Mariana Vargas-Magaña},
journal= {arXiv preprint arXiv:1702.02159},
year = {2017}
}