The Cosmological Foundation of Our World, seen in a Revised History of our Universe
Tom Gehrels

TL;DR
This paper proposes a multiverse model based on quantum and relativistic physics, explaining universe formation, survival, and evolution through debris accretion, challenging traditional Big Bang cosmology.
Contribution
It introduces a unified physics framework for multiverse evolution and offers observational evidence supporting a universe formation process distinct from the Big Bang.
Findings
Multiverse survival depends on near-critical mass physics.
Universe debris fuels new universe formation during accelerated expansion.
Supports a universe origin later than the Big Bang with dark energy insights.
Abstract
This paper has two parts, for a specific multiverse, and for the origin of our universe as it resulted from that multiverse. The first is based on the Planck domain and a Chandrasekhar equation that have quantum, relativity, gravity, and atomic physics in unified operation. The multiverse is an evolutionary system whereby universes survive only when they have those physics, and near-critical mass such that they do not collapse, nor expand too fast. The second part is based on 15 sets of observations of nucleosynthesis and particle properties, aging and demise for our universe, as well as of its early stages. The multiverse is supplied by debris from the aging universes, arriving on the accelerated expansion of intergalactic space. New universes accrete from the debris, which is re-energized and re-constituted gravitationally. In the process, the basic particle properties appear to…
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Taxonomy
TopicsCosmology and Gravitation Theories · Relativity and Gravitational Theory · Solar and Space Plasma Dynamics
