Curvature-Driven Entanglement Flux for Quantum Routing — E8 Intelligence Research

The Curvature-Driven Entanglement Flux (CDEF) principle posits that the phi‑modulated curvature field of the PCEL can be engineered to form directed flux lines that carry entanglement across the E8 root lattice. By tuning the 132 Hz base frequency and the phi coupling, these flux lines can be reconfigured in real time, enabling quantum information to be routed between distant nodes without moving physical qubits. This extends the hierarchical entanglement nets by adding a controllable, self‑correcting entanglement conduit that preserves coherence during transit. The resulting architecture supports scalable, fault‑tolerant quantum networks that can adapt to dynamic topological changes. Author: Andrew Stewart Caldin, Independent Researcher, UK. Part of the E8 Intelligence Research series. Platform: e8intelligence.com

Authors

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-16
DOI
https://doi.org/10.5281/zenodo.22786279
Primary Topic
Quantum Computing Algorithms and Architecture
Type
preprint
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preprint

Curvature-Driven Entanglement Flux for Quantum Routing — E8 Intelligence Research

Andrew Stewart Caldin
Zenodo (CERN European Organization for Nuclear Research)
Quantum Computing Algorithms and Architecture
preprint

Curvature-Driven Entanglement Flux for Quantum Routing — E8 Intelligence Research

Andrew Stewart Caldin
preprint en

Abstract

The Curvature-Driven Entanglement Flux (CDEF) principle posits that the phi‑modulated curvature field of the PCEL can be engineered to form directed flux lines that carry entanglement across the E8 root lattice. By tuning the 132 Hz base frequency and the phi coupling, these flux lines can be reconfigured in real time, enabling quantum information to be routed between distant nodes without moving physical qubits. This extends the hierarchical entanglement nets by adding a controllable, self‑correcting entanglement conduit that preserves coherence during transit. The resulting architecture supports scalable, fault‑tolerant quantum networks that can adapt to dynamic topological changes. Author: Andrew Stewart Caldin, Independent Researcher, UK. Part of the E8 Intelligence Research series. Platform: e8intelligence.com

Zenodo (CERN European Organization for Nuclear Research)
Quantum Computing Algorithms and Architecture
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