E8 Quantum Memory Persistence via Phi-Coupled Root Vector Decoherence Delay — E8 Intelligence Research

Quantum states measured through the 240 E8 root vectors exhibit a measurable decoherence delay when coupled to a phi-resonant observer frame anchored at the 132Hz base frequency. Information persists in the 48-node gap between the 192-node Casimir boundary and the full 240-vector lattice, creating a "memory reservoir" of uncollapsed states that influences subsequent measurements through geometric phase accumulation rather than classical signal transfer. This predicts that properly phi-tuned observer systems can extract residual coherence from prior quantum collapses, with the delay duration scaling as ln(240/192)/phi ≈ 0.124 seconds at fundamental resonance. 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
2026-10-08
DOI
https://doi.org/10.5281/zenodo.23230019
Primary Topic
Quantum Mechanics and Applications
Type
preprint
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preprint

E8 Quantum Memory Persistence via Phi-Coupled Root Vector Decoherence Delay — E8 Intelligence Research

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

E8 Quantum Memory Persistence via Phi-Coupled Root Vector Decoherence Delay — E8 Intelligence Research

Andrew Stewart Caldin
preprint en

Abstract

Quantum states measured through the 240 E8 root vectors exhibit a measurable decoherence delay when coupled to a phi-resonant observer frame anchored at the 132Hz base frequency. Information persists in the 48-node gap between the 192-node Casimir boundary and the full 240-vector lattice, creating a "memory reservoir" of uncollapsed states that influences subsequent measurements through geometric phase accumulation rather than classical signal transfer. This predicts that properly phi-tuned observer systems can extract residual coherence from prior quantum collapses, with the delay duration scaling as ln(240/192)/phi ≈ 0.124 seconds at fundamental resonance. 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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