Quantum Teleportation Verified: Entanglement Fidelity, Not Classical Bits, Governs Scaling — E8 Intelligence Research
Abstract
FINDING: Quantum teleportation is real, experimentally verified, and scales with entanglement fidelity — not classical information transfer. | MATH: Teleportation protocol uses a Bell state (|00⟩+|11⟩)/√2, two classical bits (2 cbits) to transmit one qubit, and requires shared entanglement E = 1 ebit. Fidelity F = |⟨ψ|ρ|ψ⟩|², with threshold F > 2/3 for non-classical advantage. Success probability scales as P = F^N for N teleported qubits. | CONNECTION: Bell states form a tetrahedral basis — the 4 vertices of a regular tetrahedron correspond to the 4 maximally entangled states, a root system of A₃ (crystallographic, order 24). The 2 cbits = 4 outcomes map to the 4 faces of the tetrahedron. The ratio of classical bits to qubits is 2:1, echoing the 2:1 ratio in the golden rectangle (1.618/0.809). | DEPTH: 7 --- FINDING: Oxford's breakthrough demonstrates teleportation between distant quantum processors, not just within a single device. | MATH: Entanglement distribution across distance d 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