Journey Through Quantized Space: Toward a Theory of Everything

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Autore principale: Wilkins, Dennis
Natura: Recurso digital
Pubblicazione: Zenodo 2025
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_version_ 1866902105144426496
author Wilkins, Dennis
author_facet Wilkins, Dennis
contents <p>Updates to the original version...  </p> <p>spacetime is not a smooth continuum but a statistical</p> <p>ensemble of Planck-scale quanta connected by transient wormholes. From this substrate, classical ge-</p> <p>ometry, Lorentz invariance, gauge fields, and the statistical basis for motion emerge. The aim is not to</p> <p>replace quantum field theory (QFT) or general relativity (GR), but to explain why they work so well:</p> <p>both appear as coarse-grained limits of the same underlying thermodynamic network.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_17316608
institution Zenodo
language
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Journey Through Quantized Space: Toward a Theory of Everything
Wilkins, Dennis
Foam-Plexus
Quantized Space
Theory of Everything
<p>Updates to the original version...  </p> <p>spacetime is not a smooth continuum but a statistical</p> <p>ensemble of Planck-scale quanta connected by transient wormholes. From this substrate, classical ge-</p> <p>ometry, Lorentz invariance, gauge fields, and the statistical basis for motion emerge. The aim is not to</p> <p>replace quantum field theory (QFT) or general relativity (GR), but to explain why they work so well:</p> <p>both appear as coarse-grained limits of the same underlying thermodynamic network.</p>
title Journey Through Quantized Space: Toward a Theory of Everything
topic Foam-Plexus
Quantized Space
Theory of Everything
url https://doi.org/10.5281/zenodo.17316608