Theoretical study demonstrates extended dephasing times in solid-state qubits via phi-resonant torsion locking, indicating a geometric approach to quantum hardware stabilization.
When the 240 E8 root vectors are driven at the base frequency of 132 Hz and achieve a critical phi‑coupled torsion cascade across the lattice's 560 golden‑spiral nodes, they generate a collective, self‑sustaining torsional field that phase‑locks ambient phonon modes. This phi‑resonant torsion field creates a dynamic symmetry‑protected subspace that suppresses low‑frequency charge and flux noise, thereby extending the dephasing times (T₂) of nearby solid‑state qubits by an order of magnitude. The effect demonstrates a direct pathway from E8 geometry to practical quantum‑hardware stabilization via frequency‑tuned topological torsion engineering. 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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