The cosmological constant and the coincidence problem in a new cosmological interpretation of the universal constant c
David Viennot, Jean-Marie Vigoureux

TL;DR
This paper proposes a new cosmological model linking the speed of light to universe expansion, which naturally explains the cosmological constant and addresses the coincidence problem without requiring an accelerating universe.
Contribution
It introduces a novel interpretation connecting light speed and cosmic expansion, enabling exact generation of the cosmological constant and solving the coincidence problem.
Findings
The model can exactly generate the cosmological constant Λ.
It offers a solution to the cosmic coincidence problem.
Reinterprets the Hubble diagram without requiring acceleration.
Abstract
In a recent paper (Vigoureux et al. Int. J. Theor. Phys. 47:928, 2007) it has been suggested that the velocity of light and the expansion of the universe are two aspects of one single concept connecting space and time in the expanding universe. It has then be shown that solving Friedmann's equations with that interpretation (and keeping c = constant) can explain number of unnatural features of the standard cosmology (for example: the flatness problem, the problem of the observed uniformity in term of temperature and density of the cosmological background radiation, the small-scale inhomogeneity problem...) and leads to reconsider the Hubble diagram of distance moduli and redshifts as obtained from recent observations of type Ia supernovae without having to need an accelerating universe. In the present work we examine the problem of the cosmological constant. We show that our model can…
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Taxonomy
TopicsCosmology and Gravitation Theories · Relativity and Gravitational Theory · Geophysics and Gravity Measurements
