The Fibonacci-Tetrahedral Lattice: A Unified Geometric Origin for Dark Matter and Dark Energy

Fuente: Zenodo
Saved in:
Bibliographic Details
Main Author: Ebanks, Andrew
Format: Recurso digital
Published: Zenodo 2026
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866901494116122624
author Ebanks, Andrew
author_facet Ebanks, Andrew
contents <p>This paper proposes the Fibonacci-Tetrahedral Lattice (FTL), a discrete geometric substrate for the vacuum derived from an E8-to-3D projection. By treating space as a quasicrystalline packing rather than a smooth continuum, we identify a foundational ’Information-Ontology’ where the 8D lattice serves as the geometric source and 3D reality is the projected result.<br>We demonstrate that the transition from 8D symmetry to 3D packing necessitates a 7.356◦ topo-logical deficit (the Aristotle Gap). This geometric frustration manifests macroscopically as an en-tropic pressure, providing a zero-parameter resolution to galactic rotation curves (“Dark Matter”) without requiring new particles.<br>Furthermore, by applying Holographic Scaling (N 2/3) to the lattice nodes, we resolve the “Vacuum Catastrophe,” deriving an observed energy density of ≈ 10−27.33 kg/m3 (matching Λ) from the theoretical Planck baseline.<br><br></p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18681613
institution Zenodo
language
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle The Fibonacci-Tetrahedral Lattice: A Unified Geometric Origin for Dark Matter and Dark Energy
Ebanks, Andrew
Discrete Spacetime
Quantum Gravity
Geometric Frustration
Fibonacci-Tetrahedral Lattice
Quasicrystal Vacuum
Holographic Principle
Dark Matter
Dark Energy
Vacuum Catastrophe
Cosmological Constant Problem
Hubble Tension
Galactic Rotation Curves
Bekenstein-Hawking Entropy
Topological Defects
Vacuum Energy Density
<p>This paper proposes the Fibonacci-Tetrahedral Lattice (FTL), a discrete geometric substrate for the vacuum derived from an E8-to-3D projection. By treating space as a quasicrystalline packing rather than a smooth continuum, we identify a foundational ’Information-Ontology’ where the 8D lattice serves as the geometric source and 3D reality is the projected result.<br>We demonstrate that the transition from 8D symmetry to 3D packing necessitates a 7.356◦ topo-logical deficit (the Aristotle Gap). This geometric frustration manifests macroscopically as an en-tropic pressure, providing a zero-parameter resolution to galactic rotation curves (“Dark Matter”) without requiring new particles.<br>Furthermore, by applying Holographic Scaling (N 2/3) to the lattice nodes, we resolve the “Vacuum Catastrophe,” deriving an observed energy density of ≈ 10−27.33 kg/m3 (matching Λ) from the theoretical Planck baseline.<br><br></p>
title The Fibonacci-Tetrahedral Lattice: A Unified Geometric Origin for Dark Matter and Dark Energy
topic Discrete Spacetime
Quantum Gravity
Geometric Frustration
Fibonacci-Tetrahedral Lattice
Quasicrystal Vacuum
Holographic Principle
Dark Matter
Dark Energy
Vacuum Catastrophe
Cosmological Constant Problem
Hubble Tension
Galactic Rotation Curves
Bekenstein-Hawking Entropy
Topological Defects
Vacuum Energy Density
url https://doi.org/10.5281/zenodo.18681613