Quantum Wormholes: Lab Construction via Entanglement and ER=EPR — E8 Intelligence Research
Abstract
FINDING: Traversable wormholes are theoretically constructible in the lab via quantum entanglement, with multi-mouth generalizations in 4D spacetime; holographic quantum computer simulations support the ER=EPR correspondence. MATH: - ER=EPR: Einstein-Rosen bridge ↔ Einstein-Podolsky-Rosen pair (entanglement entropy \( S = \frac{A}{4G\hbar} \) for the bridge cross-section). - Traversability condition: Negative energy density injected via coupling \( g \int d\tau \, \mathcal{O}_L(\tau) \mathcal{O}_R(\tau) \) between two CFTs (left/right), shifting the wormhole throat by \( \Delta t \sim \frac{g}{\hbar} \). - Multi-mouth wormholes: Fundamental group \( F_2 \) (free group on two generators) for 3 mouths; topology change requires \( \pi_1 = F_{n-1} \) for \( n \) mouths. - Holographic model: SYK model (Sachdev-Ye-Kitaev) — \( H = \sum_{i 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