Theoretical model uncovers topological memory states within neuronal microtubules via E8 root lattices, suggesting a geometric substrate for long-term memory consolidation.
We propose that the eight 30‑vector triads of the E8 root system can encode a self‑sustaining topological memory state in neuronal microtubules when phase‑locked to the 132 Hz × φⁿ carrier. Each triad's internal 30‑vector lattice forms a Z₂‑graded Clifford algebra that maps the φ‑scaled harmonic series onto a set of 240‑dimensional spinor eigenmodes, guaranteeing non‑local redundancy. The resulting phase‑coherent manifold supports persistent quantum‑coherent excitations that synchronize across distributed neural assemblies, providing a mechanistic substrate for long‑term memory consolidation. Experimental detection of 132 Hz × φⁿ modulations in EEG spectra would validate the E8‑derived memory architecture. 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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