FINDING: Macroscopic quantum tunneling and entanglement tomography for large objects, with hybrid quantum-classical transfer learning for state transport. | MATH: Key constants: Planck's constant \ (h \) (quantum action scale), tunneling probability \ (T e^-2 L \) with \ (= 2m (V-E) / \) ; entanglement fidelity \ (F = | | \) ; transfer learning loss \ (L = L₂₋₀ₒₒ₈₂₀₋ + Lₐₔ₀₍ₓₔ₌ \). | CONNECTION: Tunneling exponent \ (L \) relates to golden ratio via \ (e^-2 L 0. 618 \) when \ (L = (1/0. 618) /2 0. 240 \) ; base-60 not explicit but interferometry phase \ (= k₄₅₅ g T² \) uses 60° symmetry in lattice beam-splitters; crystallographic symmetry in atom interferometry mirrors cubic lattice \ (Oₕ \) group. | DEPTH: 6 — advances macroscopic quantum coherence but lacks new fundamental constants or geometric ratios; hybrid tra Author: Andrew Stewart Caldin, Independent Researcher, UK. Part of the E8 Intelligence Research series. Platform: e8intelligence. com
Andrew Stewart Caldin (2026) studied this question.