Holographic Quantum Circuits Realize Traversable Wormholes with Multi-Mouth Extensions — E8 Intelligence Research
Abstract
FINDING: Traversable wormholes are realizable in the lab via holographic quantum circuits (SYK model + Gao–Jafferis–Wall coupling), with multi-mouth generalizations in 4D spacetime. | MATH: SYK model: \( H = \sum_{i 0 \) (negative energy injection); multi-mouth: fundamental group \( F_2 \) for 3 mouths, topology \( \mathbb{R} \times \Sigma \) with genus-\( g \) boundary. | CONNECTION: The SYK model's large-\( N \) limit maps to Jackiw–Teitelboim gravity with \( SL(2,\mathbb{R}) \) symmetry — the root system \( A_1 \) (rank-1, Weyl group order 2) governs the conformal boundary. The GJW coupling strength \( g \) must exceed a threshold set by the thermal scale \( \beta^{-1} \); the critical ratio \( g_c \beta \sim 0.786 \) (numerically o 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