The Static Universe Hypothesis: Theoretical Basis and Observational Tests of the Hypothesis
Abstract
From the axiom of the unrestricted repeatability of all experiments, Bondi and Gold argued that the universe is in a stable, self-perpetuating equilibrium state. This concept generalizes the usual cosmological principle to the perfect cosmological principle in which the universe looks the same from any location at any time. Consequently, I hypothesize that the universe is static and in an equilibrium state (non-evolving). New physics is proposed based on the concept that the universe is a pure wave system. Based on the new physics and assuming a static universe, processes are derived for the Hubble redshift and the cosmic background radiation field. Then, following the scientific method, I test deductions of the static universe hypothesis using precise observational data primarily from the Hubble Space Telescope. Applying four different global tests of the space-time metric, I find that the observational data consistently fits the static universe model. The observational data also show that the average absolute magnitudes and physical radii of first-rank elliptical galaxies have not changed over the last 5 to 15 billion years. Because the static universe hypothesis is a logical deduction from the perfect cosmological principle and the hypothesis is confirmed by the observational data, I conclude that the universe is static and in an equilibrium state.
Keywords
Cite
@article{arxiv.astro-ph/0109110,
title = {The Static Universe Hypothesis: Theoretical Basis and Observational Tests of the Hypothesis},
author = {Thomas B. Andrews},
journal= {arXiv preprint arXiv:astro-ph/0109110},
year = {2007}
}
Comments
67 pages, 13 figures