时空原子离散介质的本体论 / Ontology of Spacetime Atom Discrete Medium
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中文摘要:现有标准模型、广义相对论、量子力学存在底层范式割裂,无法在同一本体框架下统一引力、电磁、强相互作用、弱相互作用与宇宙学效应。本文提出时空原子离散介质本体论,以不可再分的时空原子为唯一基本实体,构建严格自洽的底层公理体系。将真空定义为时空原子均匀基态排列,将所有基本粒子、相互作用力、时空效应、宇宙学现象全部归结为时空原子的排列、滑移、拓扑缺陷与应力演化。依托介质刚度、惯性密度、普朗克尺度三类基底参数,实现相对论效应、量子现象、粒子结构、相互作用机制、暗能量起源、跨学科无量纲等价规律的全域统一。 English Abstract: The existing Standard Model, General Relativity, and Quantum Mechanics suffer from fundamental paradigm fragmentation, unable to unify gravity, electromagnetism, strong and weak interactions, and cosmological effects within a single ontological framework. This paper proposes the ontology of spacetime atom discrete medium, taking indivisible spacetime atoms as the sole fundamental entity to construct a strictly self-consistent axiomatic system. The vacuum is defined as the uniform ground-state arrangement of spacetime atoms; all elementary particles, interaction forces, spacetime effects, and cosmological phenomena are reduced to the arrangement, slip, topological defects, and stress evolution of spacetime atoms. Relying on three basal parameters—medium stiffness, inertial density, and Planck scale—the theory achieves universal unification across all branches of physics. Keywords: 时空原子;离散介质;拓扑缺陷;物理统一;质量起源;暗能量 / spacetime atom; discrete medium; topological defect; physics unification; origin of mass; dark energy



