How the Expansion of the Universe Relates to Redshift and the Planck’s Length
preprint
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CC-BY-4.0
AI-generated summary
This paper models Planck's length expansion as a function of redshift, proposing it relates to black hole formation, growth, and disintegration, potentially explaining dark energy and the Hubble tension.
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Abstract
We will show that we can model the Planck´s length expansion (1.28 10⁻⁵⁴ m < Lpɢ < 1.61 10⁻³⁵ m) as a function of the redshift z. Recall that in the theory: RLC electrical model of a black hole and the early universe, we proposed that when a black hole forms the Planck´s length corresponds to Lpɛ = 1.61 10⁻³⁵ m; as the black hole grows, the Planck´s length decreases until the black hole reaches its critical mass and then disintegrates, at which point the Planck´s length reaches the value of Lpɢ = 1.28 10⁻⁵⁴ m. This will allow us to understand dark energy and the Hubble´s tension problem, that is, the discrepancy with the Hubble´s constant.
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Source provenance
- europepmc
- last seen: 2026-05-20T01:45:00.602351+00:00
- unpaywall
- last seen: 2026-05-27T02:00:06.600101+00:00
License: CC-BY-4.0