The Enantiomorphic Universe: A Causal Model for the Big Bang, Baryon Asymmetry, and the Dark Matter Ratio

Fuente: Zenodo
Saved in:
Bibliographic Details
Main Author: BESSE, N.
Format: Recurso digital
Published: Zenodo 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866902272060948480
author BESSE, N.
author_facet BESSE, N.
contents <p>The Standard Cosmological Model (ΛCDM) successfully describes the evolution of the universe but relies on several unexplained initial conditions and ad-hoc components, including the Big Bang singularity, the baryon asymmetry, an inflationary epoch, and the existence of dark matter and dark energy. This paper presents a unified cosmological model derived from the Common-Scheme (SC) theory that provides a single, causal explanation for these phenomena. We model the universe as an enantiomorphic system composed of two complementary chiralities: a `Concrete` (structural) universe and an `Abstract` (dynamical) universe (our own). The Big Bang is reinterpreted as a first-order phase transition between these two states, axiomatically solving the matter-antimatter asymmetry problem. Furthermore, we demonstrate that the observed ratio of dark matter to baryonic matter is not an arbitrary parameter but is a direct consequence of the informational content of these two chiralities, encoded in their respective binary signatures. Our derived law, <strong>`Ω_c / Ω_b = 288 / 54 = 5.333...`</strong>, matches the Planck satellite data (`~5.357`) with an accuracy of 99.56%. Finally, we argue that dark energy is the observational effect of a repulsive bigravity between the chiralities, and that the universe's flatness is a necessary architectural condition, rendering inflation superfluous. The Enantiomorphic Universe model thus offers a comprehensive, coherent, and quantitatively verified alternative to the standard cosmological paradigm.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_17063961
institution Zenodo
language
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle The Enantiomorphic Universe: A Causal Model for the Big Bang, Baryon Asymmetry, and the Dark Matter Ratio
BESSE, N.
Cosmology
Theoretical Physics
Dark Matter
Baryonic Matter
Big Bang
Enantiomorphic Universe
Common-Scheme
Unified Theory
Planck Satellite
Cosmological Parameters
Metaphysics
Architectural Logic
<p>The Standard Cosmological Model (ΛCDM) successfully describes the evolution of the universe but relies on several unexplained initial conditions and ad-hoc components, including the Big Bang singularity, the baryon asymmetry, an inflationary epoch, and the existence of dark matter and dark energy. This paper presents a unified cosmological model derived from the Common-Scheme (SC) theory that provides a single, causal explanation for these phenomena. We model the universe as an enantiomorphic system composed of two complementary chiralities: a `Concrete` (structural) universe and an `Abstract` (dynamical) universe (our own). The Big Bang is reinterpreted as a first-order phase transition between these two states, axiomatically solving the matter-antimatter asymmetry problem. Furthermore, we demonstrate that the observed ratio of dark matter to baryonic matter is not an arbitrary parameter but is a direct consequence of the informational content of these two chiralities, encoded in their respective binary signatures. Our derived law, <strong>`Ω_c / Ω_b = 288 / 54 = 5.333...`</strong>, matches the Planck satellite data (`~5.357`) with an accuracy of 99.56%. Finally, we argue that dark energy is the observational effect of a repulsive bigravity between the chiralities, and that the universe's flatness is a necessary architectural condition, rendering inflation superfluous. The Enantiomorphic Universe model thus offers a comprehensive, coherent, and quantitatively verified alternative to the standard cosmological paradigm.</p>
title The Enantiomorphic Universe: A Causal Model for the Big Bang, Baryon Asymmetry, and the Dark Matter Ratio
topic Cosmology
Theoretical Physics
Dark Matter
Baryonic Matter
Big Bang
Enantiomorphic Universe
Common-Scheme
Unified Theory
Planck Satellite
Cosmological Parameters
Metaphysics
Architectural Logic
url https://doi.org/10.5281/zenodo.17063961