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Empirical measurement of cosmic luminosity-angular distance relation

General Physics 2023-05-04 v6

Abstract

One of the keys to understanding the universe is the proper measurement of the relation between the luminosity distance dLd_L and the angular diameter distance dAd_A. In 1933 Etherington deduced from general relativity the reciprocity equation dL=dA(1+z)γd_L=d_A(1+z)^{\gamma}, with γ=1\gamma=1 for a local (non-expanding) universe. This relation has been adapted to an expanding universe with the value γ=2\gamma=2 by the introduction of the concept of comoving distance (dMd_M). In this work, we developed the method \textit{Cosmic Redshift Inference} to measure experimentally the value of γ\gamma defined above independently of any possible galaxy evolution. The method has been applied to 1.2 million galaxy of SDSS DR15 obtaining the value γ1\gamma\simeq 1.

Keywords

Cite

@article{arxiv.2003.06139,
  title  = {Empirical measurement of cosmic luminosity-angular distance relation},
  author = {Juan De Vicente},
  journal= {arXiv preprint arXiv:2003.06139},
  year   = {2023}
}

Comments

Added a section with "empirical determination of the cosmic index"

R2 v1 2026-06-23T14:13:38.144Z