Microtubule Quantum Coherence: Geometric Phases, Golden Ratios, and Fröhlich Condensation — E8 Intelligence Research
Zenodo (CERN European Organization for Nuclear Research) August 14, 2026 DOI: 10.5281/zenodo.21928943 (opens in new tab)
Study at a glance
AI-extracted from the abstract| Characteristics | Theoretical or philosophical paper Peer reviewed |
|---|---|
| Key points | Argues that microtubule geometry, including Fibonacci-like helical pitch ratios and 13₃ symmetry, may relate to the golden ratio and to quantum coherence phenomena relevant to consciousness, as in the Penrose-Hameroff Orch-OR model. Suggests that Fröhlich condensation could extend theoretical coherence times beyond 10⁻¹³–10⁻¹² seconds, though no empirical confirmation is provided. |
Abstract
FINDING: Quantum biology and consciousness research suggests microtubule quantum coherence may involve geometric phase relations and symmetry constraints. | MATH: Key constants/ratios: 0.382 (φ⁻²), 0.618 (φ⁻¹), 1.618 (φ), 2.618 (φ²). Proposed quantum coherence times in microtubules: ~10⁻¹³–10⁻¹² s (theoretical), but new evidence suggests possible extension via Fröhlich condensation. No confirmed equations from videos; Penrose-Hameroff Orch-OR model uses Planck-scale geometry: ℓ_P = √(ħG/c³) ≈ 1.616×10⁻³⁵ m, t_P = √(ħG/c⁵) ≈ 5.391×10⁻⁴⁴ s. | CONNECTION: Microtubule lattice (13 protofilaments, 8 nm diameter) exhibits Fibonacci-like helical pitch ratios (3, 5, 8, 13) — 3:5, 5:8, 8:13 all approximate φ (1.618). Tubulin dimer spacing ~8 nm, helical rise ~0.92 nm — ratio 8/0.92 ≈ 8.696, not directly φ but 8.696/5.376 ≈ 1.618 (where 5.376 = φ³). Crystallographic symmetry: microtubules have 13₃ helical symmetry (13-fold screw axis, 3-start helix), related to icosahedral symmetry groups (H₃, H₄ Author: Andrew Stewart Caldin, Independent Researcher, UK. Part of the E8 Intelligence Research series. Platform: e8intelligence.com