Physics & Spacearticle2026-08-02

Substrate Logistics: The Chiral Chassis

Open access0 citations

Abstract

Title: Substrate Logistics: The Chiral Chassis: Falsifying the Cosmological Principle via the $10^{-21}$ Gravitational Strain Limit, Cosmic Birefringence, and Macroscopic Bulk Flows of the 120-Cell Author: Marco Lindenbeck Description: Standard continuous cosmology fundamentally relies upon the Cosmological Principle, asserting that the universe is homogeneous and isotropic on large scales. However, this assumption increasingly fails to account for a mounting catalog of large-scale observational anomalies, necessitating phenomenological patches such as dark matter, dark energy, and axion fields. By modeling the macroscopic universe not as an expanding isotropic void, but as a rigidly structured, discrete Poincaré Dodecahedral Space (the 120-cell), these anomalies resolve geometrically. This paper demonstrates that the $10^{-21}$ macroscopic gravitational wave strain limit detected by LIGO, the anomalous $0.35^\circ$ cosmic birefringence of the cosmic microwave background (CMB), gigaparsec-scale quasar spin alignments, and $600\text{ km/s}$ bulk flows are not disconnected phenomena. Rather, they are zero-parameter observational shadows of a single, unified topological framework: a discrete network governed by a mandatory $36^\circ$ pre-tensioned chiral twist. By deriving the exact $5/6$ dimensional projection scalar, this paper mathematically bridges the fundamental metric topology to empirical observations, conclusively falsifying large-scale isotropy and revealing the physical hardware chassis of the cosmos.

// Source

View paper (DOI)Open access versionOpenAlexZenodo (CERN European Organization for Nuclear Research)Published 2026-08-02

Authors: Marco Lindenbeck