Quantum Teleportation: States Over 1,400 km, Energy on Superconductors — E8 Intelligence Research
Abstract
FINDING: Quantum teleportation transfers quantum *states* (information), not matter or energy, with demonstrated ranges up to 1,400 km (satellite) and a new experimental realization of *energy* teleportation on superconducting hardware. | MATH: Core formalism: Bell-state measurement + classical communication (2 bits) + unitary correction. State transfer: |ψ⟩ → |ψ⟩ via maximally entangled pair (|Φ⁺⟩ = (|00⟩+|11⟩)/√2). Fidelity F = |⟨ψ_out|ψ_in⟩|² → 1 in ideal case. Energy teleportation (arXiv:2301.02666): uses local operations and classical communication (LOCC) on entangled ground state; energy extracted at receiver without local energy input — quantified by negative conditional entropy S(A|B) < 0 and energy gain ΔE = (1/2)ℏω(1 − √(1 − γ²)) per cycle (γ = squeezing/entanglement parameter). | CONNECTION: The Bell basis is a 4-element orthonormal set in ℂ²⊗ℂ² — isomorphic to the tetrahedral group (A₄) and the root system of SU(4). The 2-bit classical communication corresponds to the 4 Bel 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