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◇ Open MIND2026-08-01· Physics

Topological Phase Transitions in Quantum Information Networks and the Emergence of Microscopic Spacetime / 量子資訊網絡的拓撲相變與微觀時空突顯機制

Shun-Ching Lee

原始摘要(英文原文)· Original abstract
This paper (VII_001) establishes a background-independent theoretical framework demonstrating that four-dimensional continuous spacetime is an emergent phenomenon originating from topological phase transitions within a non-local Qubit Network. By constructing the Information Distance Operator $\hat{D}_{ij}$, we map quantum mutual information to geometric space. Driven by the Universal Field of Intelligence (UFI) negentropic dynamics through black hole resets (Paper I_015) and transcending the Internal Observer Fallacy (Paper I_001), the network undergoes spontaneous symmetry breaking to condense into a smooth manifold where Einstein's Field Equations emerge as macroscopic equations of state.
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Topological Phase Transitions in Quantum Information Networks and the Emergence of Microscopic Spacetime / 量子資訊網絡的拓撲相變與微觀時空突顯機制 — 科研速览 Science Skim