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Infogravity 4.2+: Entropy, Informational Projection, and the Structural Origin of Geometry

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Zenodo2025-12-27 更新2026-05-26 收录
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Infogravity 4.2+ develops a structural account of how spacetime geometry and gravity may emerge from deeper informational organisation. The framework starts from the observation that every effective physical description involves irreversible loss of microscopic detail — an informational projection — naturally characterised by entropy. In this view, entropy functions not only as a measure of uncertainty, but as a selection principle: only relational structures that remain stable under repeated projection persist as geometric form. Gravity is therefore interpreted as the large-scale, entropic phase of an underlying informational dynamics, rather than a fundamental interaction of the same type as the gauge forces. A minimal structural requirement follows: bound systems in three dimensions possess a six-dimensional internal phase space (X = 6), with the hydrogen atom representing the simplest realisation of such a stable informational node. The aim is not to modify General Relativity, but to clarify the structural conditions under which geometric description becomes stable and unavoidable. In this sense, Infogravity 4.2+ situates gravity at the interface of physics and philosophy, identifying entropy-driven selection as a possible structural origin of emergent geometry.

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2025-12-27
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