The Fractal-Dark Matter Shield Hypothesis: Solving the Multiverse-Entropy Paradox via 22 Hidden Dimensions

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Autore principale: SARICI, Efe
Natura: Recurso digital
Lingua:inglese
Pubblicazione: Zenodo 2025
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author SARICI, Efe
author_facet SARICI, Efe
contents <p><span dir="auto"><span dir="auto">.This paper proposes a novel cosmological model to resolve the fundamental conflict between the Second Law of Thermodynamics (Entropy) and the Multiverse </span></span>Theory. I hypothesize that our observable universe is an isolated geometric structure protected from the chaotic entropy of the multiverse. By revisiting Bosonic String Theory, I derive that the 22 ”missing” dimensions (26 − 4) are not compactified but are preserved in a Fractal Geometry. Furthermore, I propose that Dark Matter is the physical manifestation of mass residing within these 22 hidden dimensions. A striking correlation is demonstrated: the ratio of hidden to observable dimensions (22/4 = 5.5) closely mirrors the precise cosmic ratio of Dark Matter Baryonic Matter (≈ 5.36) derived from Planck 2018 data, with a deviation of less than 2.6%.</p> <p> </p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_17988943
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle The Fractal-Dark Matter Shield Hypothesis: Solving the Multiverse-Entropy Paradox via 22 Hidden Dimensions
SARICI, Efe
fractal-dark matter shield, hidden dimensions, multiverse entropy paradox, bosonic string theory, dark matter, geometric ratio, 22 dimensions, fractal lattice, entropy isolation, gravitational binding, cosmological model, thermodynamic stability, unification of dark matter and hidden dimensions, fractal geometry as cosmic shield, dimensional analysis from string theory, geometric ratio matching observed mass distribution, entropy protection mechanism in multiverse theory, implications for cosmology and fundamental physics
<p><span dir="auto"><span dir="auto">.This paper proposes a novel cosmological model to resolve the fundamental conflict between the Second Law of Thermodynamics (Entropy) and the Multiverse </span></span>Theory. I hypothesize that our observable universe is an isolated geometric structure protected from the chaotic entropy of the multiverse. By revisiting Bosonic String Theory, I derive that the 22 ”missing” dimensions (26 − 4) are not compactified but are preserved in a Fractal Geometry. Furthermore, I propose that Dark Matter is the physical manifestation of mass residing within these 22 hidden dimensions. A striking correlation is demonstrated: the ratio of hidden to observable dimensions (22/4 = 5.5) closely mirrors the precise cosmic ratio of Dark Matter Baryonic Matter (≈ 5.36) derived from Planck 2018 data, with a deviation of less than 2.6%.</p> <p> </p>
title The Fractal-Dark Matter Shield Hypothesis: Solving the Multiverse-Entropy Paradox via 22 Hidden Dimensions
topic fractal-dark matter shield, hidden dimensions, multiverse entropy paradox, bosonic string theory, dark matter, geometric ratio, 22 dimensions, fractal lattice, entropy isolation, gravitational binding, cosmological model, thermodynamic stability, unification of dark matter and hidden dimensions, fractal geometry as cosmic shield, dimensional analysis from string theory, geometric ratio matching observed mass distribution, entropy protection mechanism in multiverse theory, implications for cosmology and fundamental physics
url https://doi.org/10.5281/zenodo.17988943