Brans-Dicke gravity with a cosmological constant smoothes out $\Lambda$CDM tensions
Abstract
We analyze Brans-Dicke gravity with a cosmological constant, , and cold dark matter (BD-CDM for short) in the light of the latest cosmological observations on distant supernovae, Hubble rate measurements at different redshifts, baryonic acoustic oscillations, large scale structure formation data, gravitational weak-lensing and the cosmic microwave background under full Planck 2015 CMB likelihood. Our analysis includes both the background and perturbations equations. We find that BD-CDM is observationally favored as compared to the concordance CDM model, which is traditionally defined within General Relativity (GR). In particular, some well-known persisting tensions of the CDM with the data, such as the excess in the mass fluctuation amplitude and specially the acute -tension with the local measurements, essentially disappear in this context. Furthermore, viewed from the GR standpoint, BD-CDM cosmology mimics quintessence at c.l. near our time.
Cite
@article{arxiv.1909.02554,
title = {Brans-Dicke gravity with a cosmological constant smoothes out $\Lambda$CDM tensions},
author = {Joan Sola and Adria Gomez-Valent and Javier de Cruz Perez and Cristian Moreno-Pulido},
journal= {arXiv preprint arXiv:1909.02554},
year = {2019}
}
Comments
The present version, accepted for publication in Astrophys.J. Lett., contains an extended analysis (Fig. 1 is more complete) and also new comments. References added