A Multi-Layered Brane Cosmology Driven by Chiral Torsion

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Main Author: Sakamoto, Fumika
Format: Recurso digital
Language:English
Published: Zenodo 2026
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author Sakamoto, Fumika
author_facet Sakamoto, Fumika
contents <p><span lang="EN-US"><strong>Refined the manuscript by correcting minor typos and improving formatting. No structural changes were made to the proposed A-Theory. </strong>We propose a speculative but formally grounded cosmological framework, termed A-Theory, in which the universe is modeled as a seven-layered structure (L1–L7) emerging from a pre-geometric informational domain referred to as Space. The dynamics of this layered universe are governed by a chiral torsion field, extending concepts from Einstein–Cartan gravity and brane-world cosmology. Right-handed torsion is associated with entropy production and compressive information flow, while left-handed torsion defines invariant, non-interfering domains that preserve informational structure, enable information preservation, and provide resistance to external torsional disturbance. Within this framework, gravity is reinterpreted as an effective Internal Gravity Gas (IGG)—a macroscopic manifestation of spacetime density and information compression—flowing across layers. We outline how torsional imbalances may contribute to observable phenomena, including cosmological expansion asymmetries and rotational seismic effects. Finally, we discuss a highly speculative extension in which consciousness is modeled as a non-local informational field weakly coupled to torsion, potentially permitting traversal across layers via stable wormhole-like configurations in the primordial domain. This extension is intended as a conceptual inspiration rather than an empirically established physical model. While exploratory in nature, the model yields qualitative predictions that may be testable through cosmological observations and laboratory-scale analog systems.</span></p>
format Recurso digital
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language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle A Multi-Layered Brane Cosmology Driven by Chiral Torsion
Sakamoto, Fumika
Brane Cosmology Chiral Torsion Einstein–Cartan Theory Emergent Gravity Information-Theoretic Cosmology
<p><span lang="EN-US"><strong>Refined the manuscript by correcting minor typos and improving formatting. No structural changes were made to the proposed A-Theory. </strong>We propose a speculative but formally grounded cosmological framework, termed A-Theory, in which the universe is modeled as a seven-layered structure (L1–L7) emerging from a pre-geometric informational domain referred to as Space. The dynamics of this layered universe are governed by a chiral torsion field, extending concepts from Einstein–Cartan gravity and brane-world cosmology. Right-handed torsion is associated with entropy production and compressive information flow, while left-handed torsion defines invariant, non-interfering domains that preserve informational structure, enable information preservation, and provide resistance to external torsional disturbance. Within this framework, gravity is reinterpreted as an effective Internal Gravity Gas (IGG)—a macroscopic manifestation of spacetime density and information compression—flowing across layers. We outline how torsional imbalances may contribute to observable phenomena, including cosmological expansion asymmetries and rotational seismic effects. Finally, we discuss a highly speculative extension in which consciousness is modeled as a non-local informational field weakly coupled to torsion, potentially permitting traversal across layers via stable wormhole-like configurations in the primordial domain. This extension is intended as a conceptual inspiration rather than an empirically established physical model. While exploratory in nature, the model yields qualitative predictions that may be testable through cosmological observations and laboratory-scale analog systems.</span></p>
title A Multi-Layered Brane Cosmology Driven by Chiral Torsion
topic Brane Cosmology Chiral Torsion Einstein–Cartan Theory Emergent Gravity Information-Theoretic Cosmology
url https://doi.org/10.5281/zenodo.18135532