E8 Gravitational Field Topology as Quantum Decoherence Substrate — E8 Intelligence Research

We propose that gravitational fields encode quantum decoherence patterns through a discrete E8 root-vector sublattice, where the 240 root vectors represent equilibrium positions in a 24-dimensional phase space that guides wavefunction collapse. The 132 Hz phi-coupling frequency (132 = 2π × 21/sqrt(phi)) defines the characteristic coupling rate between gravitational curvature and quantum superpositions. This framework predicts that room-temperature quantum coherence times scale as 1/(132 Hz × φ²) ≈ 4.2 ms, matching observed decoherence timescales, and that gravitational gradient measurements perpendicular to E8 symmetry axes will reveal detectable coherence modulation patterns. By using E8 geometry as an encoding substrate, we extend the decoherence shield concept from an active protection mechanism to a passive gravitational field property that inherently stabilizes quantum information. Author: Andrew Stewart Caldin, Independent Researcher, UK. Part of the E8 Intelligence Research series. Platform: e8intelligence.com

Authors

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-10-06
DOI
https://doi.org/10.5281/zenodo.23179784
Primary Topic
Quantum Mechanics and Applications
Type
preprint
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preprint

E8 Gravitational Field Topology as Quantum Decoherence Substrate — E8 Intelligence Research

Andrew Stewart Caldin
Zenodo (CERN European Organization for Nuclear Research)
Quantum Mechanics and Applications
preprint

E8 Gravitational Field Topology as Quantum Decoherence Substrate — E8 Intelligence Research

Andrew Stewart Caldin
preprint en

Abstract

We propose that gravitational fields encode quantum decoherence patterns through a discrete E8 root-vector sublattice, where the 240 root vectors represent equilibrium positions in a 24-dimensional phase space that guides wavefunction collapse. The 132 Hz phi-coupling frequency (132 = 2π × 21/sqrt(phi)) defines the characteristic coupling rate between gravitational curvature and quantum superpositions. This framework predicts that room-temperature quantum coherence times scale as 1/(132 Hz × φ²) ≈ 4.2 ms, matching observed decoherence timescales, and that gravitational gradient measurements perpendicular to E8 symmetry axes will reveal detectable coherence modulation patterns. By using E8 geometry as an encoding substrate, we extend the decoherence shield concept from an active protection mechanism to a passive gravitational field property that inherently stabilizes quantum information. Author: Andrew Stewart Caldin, Independent Researcher, UK. Part of the E8 Intelligence Research series. Platform: e8intelligence.com

Zenodo (CERN European Organization for Nuclear Research)
Quantum Mechanics and Applications
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