AI & Computingpreprint2026-09-04

Quantum Teleportation Advances: Energy Transfer and 1,400 km Distance — E8 Intelligence Research

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Abstract

FINDING: Quantum teleportation transmits quantum states (not matter) via entanglement; recent work extends this to teleporting energy on superconducting hardware, with earth-to-space distances up to 1,400 km. | MATH: Core protocol uses Bell-state measurement (BSM) with basis states |Φ±⟩ = (|00⟩ ± |11⟩)/√2, |Ψ±⟩ = (|01⟩ ± |10⟩)/√2; teleportation fidelity F = ⟨ψ|ρ_out|ψ⟩; for energy teleportation, the extracted energy ΔE = ⟨H⟩_out − ⟨H⟩_in, with conditional work W = −(1/2)⟨H⟩(1 − √(1 − 4|γ|²)) where γ is the entanglement parameter; distance scaling follows photon loss η ∝ exp(−αL) with L = 1,400 km (Micius satellite). | CONNECTION: The Bell states are 4-fold symmetric under the tetrahedral group (T_d), isomorphic to A₄ — a crystallographic point group. The √2 normalization ties to the 45° rotation in SO(2), and the 1/√2 factor appears in the golden-ratio-adjacent context of maximal entanglement (concurrence C = 2|γ| = 1 at the critical point). The energy teleportation protocol's efficien Author: Andrew Stewart Caldin, Independent Researcher, UK. Part of the E8 Intelligence Research series. Platform: e8intelligence.com

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View paper (DOI)Open access versionOpenAlexZenodo (CERN European Organization for Nuclear Research)Published 2026-09-04

Authors: Andrew Stewart Caldin