Theoretical modeling demonstrates bidirectional neural-photon entanglement via an E8 quasicrystalline lattice, suggesting a geometric framework linking biological and optical quantum states.
Let me state the finding in one clean sentence: by projecting the 240 root vectors of the exceptional Lie group E8 onto a 600-cell quasicrystal lattice that is phase-locked at 132 hertz with modulations scaled by the golden ratio phi, we have identified specific clusters of root vectors that form resonant cavities capable of simultaneously trapping coherent neural oscillations and photon polarization states, creating a bidirectional entanglement channel between biological tissue and optical systems. To give you the field context, this work sits at the intersection of quantum biology, geometric representation theory, and quantum optics. For decades, researchers have debated whether microtubule quantum states in neurons could couple to anything outside the brain. We are not arguing for consciousness as a fundamental field. We are showing that the same 240-dimensional symmetry structure that appears in high-energy physics and superstring theory also provides a natural geometric substrat 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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