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Three Worlds: Resolving the Black Hole Information Paradox with Cosmic Rebirth

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Zenodo2026-01-25 更新2026-05-26 收录
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The black hole information paradox arises from the apparent conflict between unitary quantum evolution and the thermal nature of Hawking radiation. We resolve this tension by recognizing that spacetime itself bifurcates into three causally autonomous domains during gravitational collapse: (I) the exterior universe, (II) the black hole interior, and (III) a new expanding spacetime born from the singularity. Within this “Three Worlds” framework, information is not lost but partitioned: it enters World II, where tidal forces erase all structure until entropy vanishes at the singularity, thereby seeding a low-entropy Big Bang in World III. Crucially, the second law of thermodynamics holds independently in each world when formulated within causal diamonds. The model predicts a testable observational signature: anisotropic dark energy fluctuations around sites of former low-spin black holes, with magnitude inversely proportional to the square of the black hole mass and spatial scale growing as the cube root of cosmic time. Upcoming surveys (Euclid, Roman, SKA) can probe this signal within the next decade. By linking black hole physics to cosmic origins, the framework explains both the information paradox and the low-entropy initial condition of our universe—without firewalls, remnants, or holographic duality—offering a minimal, falsifiable, and cosmologically rich resolution.

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Zenodo
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2026-01-25
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