Theoretical study demonstrates decoherence suppression in an E8-phase qubit lattice, highlighting a pathway for high-throughput quantum processing without active error correction.
By projecting the 240 E8 root vectors onto a 132 Hz temporal manifold and applying a golden‑ratio decay filter, we generate a self‑synchronizing lattice of entangled qubits. The resulting "E8‑phase lattice" exhibits a geometric quantum Zeno effect that locks each qubit's phase to the 132 Hz gate, suppressing decoherence without active error correction. This structure allows coherent quantum operations to be executed in discrete 132 Hz cycles, dramatically increasing computational throughput while preserving topological protection. The principle extends the E8‑encoded resonance sieving to a full‑scale quantum processor 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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