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Spacetime as Relational Weaving: A Foundational Framework Unifying Quantum Indeterminacy, Gravitational Geometry, and Cosmic Genesis

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Zenodo2026-01-20 更新2026-05-26 收录
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We propose a background-independent framework in which spacetime is not a primitive arena but an emergent geometric structure arising from the statistical stabilization of a network of unfixed relations among elementary event units. The theory rests on two epistemic principles: (1) causal accessibility—events are only influenced by their causal past; and (2) information conservation—no physical process erases initial correlations. At microscopic scales, the relational network remains fluid, giving rise to quantum indeterminacy, nonlocal entanglement, and tunneling as manifestations of incomplete anchoring. At macroscopic scales, mass-induced stabilization reproduces curved spacetime and general relativity. Black hole horizons are interpreted not as geometric surfaces but as absolute causal boundaries that partition reality into two physically distinct worlds: an exterior universe and an interior universe, each causally closed and informationally self-contained. The resulting inter-cosmic energy flow provides a dynamical origin for dark energy and predicts a slowly time-varying Hubble parameter. Crucially, the framework yields testable deviations from standard quantum mechanics—such as spin-dependent uncertainty relations—and operates entirely within four observable dimensions, without invoking extra dimensions, supersymmetry, or the multiverse.

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Zenodo
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2026-01-20
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