paper

Cosmological constraints from angular homogeneity scale measurements

arXiv:2409.06009

Abstract

In this paper, we obtain new measurements of the angular homogeneity scale () from the BOSS DR12 and eBOSS DR16 catalogs of Luminous Red Galaxies of the Sloan Digital Sky Survey. Considering the flat CDM model, we use the data to constrain the matter density parameter () and the Hubble constant (). We find km s Mpc and . By combining the measurements with current Baryon Acoustic Oscillations (BAO) and Type Ia Supernova (SN) data, we obtain km s Mpc and ( + BAO) and km s Mpc and ( + SN). We show that measurements help break the BAO and SN degeneracies concerning , as they do not depend on the sound horizon scale at the drag epoch or the SN absolute magnitude value obtained from the distance ladder method. Hence, despite those constraints are less stringent compared to other probes, data may provide an independent cosmological probe of in light of the Hubble tension. For completeness, we also forecast the constraining power of future data via Monte Carlo simulations. Considering a relative error of the order of 1, we obtain competitive constraints on and ( error) from the joint analysis with current SN and BAO measurements.

10 pages, 10 figures

Cosmological constraints from angular homogeneity scale measurements · wovepaper