Hubble Expansion as an Einstein Curvature
Abstract
Extending the spacetime manifold of general relativity (GR) to incorporate the Hubble expansion of space as a specific curvature, generates a modified solution with three additional non-zero Christoffel symbols and a reformulated Ricci tensor and curvature. The observational consequences of this reformulation are compared with the CDM model for luminosity distance using the extensive type~Ia supernovae (SNe~1a) data with redshift corrected to the CMB, and for angular diameter distance using the recent baryonic acoustic oscillation (BAO) data. For the SNe~1a data, the modified GR and CDM models differ by ~mag. over , with overall weighted RMS errors of ~mag for modified GR and ~mag for CDM respectively. The BAO measures span a range , with weighted RMS errors of ~Mpc with for the modified GR model, and ~Mpc with for the CDM model. The derived GR metric for this new solution describes both the SNe~1a and the BAO observations with comparable accuracy to the CDM model. By incorporating the Hubble expansion of space within general relativity as a specific curvature term, these observations may be described without requiring additional parameters for either dark matter or accelerating dark energy.
Keywords
Cite
@article{arxiv.1803.02198,
title = {Hubble Expansion as an Einstein Curvature},
author = {John Herbert Marr},
journal= {arXiv preprint arXiv:1803.02198},
year = {2022}
}
Comments
Published in JMP 2022