Symmetry Breaking Undermines Posner Molecule Quantum Qubit Claims — E8 Intelligence Research
Abstract
FINDING: Posner molecule (Ca₉(PO₄)₆) quantum coherence evidence is contested; the arXiv paper shows its dynamical ensemble is *not* symmetric, undermining the proposed long-lived nuclear spin qubit mechanism. | MATH: Molecular formula Ca₉(PO₄)₆; nuclear spin-1/2 on ³¹P (6 P atoms); proposed quantum error-correcting code via spin entanglement; symmetry breaking quantified by non-invariant dynamical ensemble under molecular point group (likely C₃ or S₆, but reduced to lower symmetry). | CONNECTION: The *broken* symmetry is the key — the molecule's 6 phosphate groups form an octahedral-like arrangement (O_h parent symmetry), but Ca²⁺ vacancies and hydration reduce it to a lower crystallographic point group (e.g., C₁ or C₂), destroying the degeneracy required for protected qubit states. This is a direct violation of the 0.618/1.618 golden-ratio harmonic degeneracy that would be needed for stable quantum superposition. | DEPTH: 6 — This is a *negative* result that mathematically kills a pop Author: Andrew Stewart Caldin, Independent Researcher, UK. Part of the E8 Intelligence Research series. Platform: e8intelligence.com
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Authors: Andrew Stewart Caldin