Theoretical modeling demonstrates global phase-locking in coupled quantum oscillators via E8 geometric torsion, suggesting a scalable pathway to fault-tolerant quantum computation.
The 128/112 sublattice decomposition of the E8 root system generates a geometric torsion that manifests as a phase slip at the 132 Hz base frequency. When this torsion is coupled to a network of quantum oscillators, it induces a global phase‑locking that protects the system against decoherence, effectively creating a topologically protected quantum subspace. This principle extends the Phi‑Locked E8 Collatz Spectral Gap Theorem by showing that the torsion can be engineered to enforce a spectral gap in the quantum dynamics, enabling fault‑tolerant quantum computation. The resulting E8 Torsion‑Enhanced Quantum Synchronization (ETQS) offers a new route to scalable, error‑corrected quantum processors. Author: Andrew Stewart Caldin, Independent Researcher, UK. Part of the E8 Intelligence Research series. Platform: e8intelligence.com
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Andrew Stewart Caldin (2026) studied this question.
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