Society & Economicspreprint2026-08-17

Quantum Entanglement and Holographic Duality Enable Lab-Made Traversable Wormhole on Quantum Computer — E8 Intelligence Research

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Abstract

FINDING: Traversable wormhole construction in the lab uses quantum entanglement and holographic duality (AdS/CFT) to create a short, traversable bridge between two entangled quantum systems, realized on a quantum computer. MATH: Key equations/constants: - AdS/CFT correspondence: \( \text{AdS}_{d+1} \leftrightarrow \text{CFT}_d \) (bulk gravity ↔ boundary quantum field theory) - ER=EPR conjecture: Einstein-Rosen bridge (wormhole) ↔ maximally entangled quantum state (Bell pair) - Traversability condition: Negative energy density (via quantum energy inequality violation) required to keep throat open; related to Casimir effect energy density \( \langle T_{00} \rangle \propto -\hbar c / d^4 \) for plate separation \( d \) - Multi-mouth wormhole fundamental group: \( \pi_1 = F_2 \) (free group on two generators) for three-mouth case, indicating non-trivial topology - No explicit golden ratio, base-60, or crystallographic constants appear in these findings. CONNECTION: No direct g 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 2026-08-17

Authors: Andrew Stewart Caldin