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定子‑动子宇宙模型(SRCM v1.4) Stator‑Rotor Cosmic Model (SRCM v1.4)

Sep 2026 · Zenodo (CERN European Organization for Nuclear Research)
Cosmology and Gravitation Theories

Abstract

中文摘要 定子‑动子宇宙模型(Stator‑Rotor Cosmic Model, SRCM‑v1.4)是一套基于离散时空的猜想性统一物理框架。该模型引入两类本体单元:静态不可再分的空间格点定子与作为能量最小单元的动态动子;空间采用菱形十二面体密堆积(面心立方晶格),时间由普朗克时长的离散帧构成。模型设置九条基础公理,通过定子势函数 Φₛ、动子簇函数 Ψᵣ、全局同步约束场 Γ 三大核心函数耦合演化,将相对论效应、量子力学行为、引力、宇宙膨胀解释为底层格点规则在宏观尺度的涌现现象。 在该框架下,光速由定子格距与帧时长直接导出;宇宙加速膨胀不需要引入暗能量实体,来源于沉寂定子的自我增殖;质量不是动子的内禀属性,是动子簇与定子势函数耦合产生的惯性阻力;LHC 观测到的 125 GeV 共振信号被解释为定子势的非线性激发而非基本希格斯粒子;量子纠缠被理解为全局逻辑约束,不存在超光速物理信号传递;手征费米子与宇称不守恒起源于晶格两类四面体空隙的几何不对称;给出 1~12 MeV 暗物质候选质量窗口以及大撕裂宇宙结局预言。 本工作给出全套可证伪预言与对应判决实验条件,尝试对光速、哈勃张力、暗能量、暗物质、CMB、规范对称性起源、双缝干涉等粒子物理与宇宙学难题提供统一图景。完整手稿文本可直接输入大语言模型开展交互式研讨,充分借助 AI 能力开展模型研读,例如可以向 AI 提问 “双缝干涉推导”等具体问题,获取对应的物理推导与细节解释。该手稿尚未经过同行评审,部分推导停留在定性框架层面,部分参数依赖外部观测输入,广义相对论完整连续极限、全部标准模型粒子的动子簇构型等内容仍属于待完成工作。模型的真伪最终交由未来物理实验与严格数学分析检验。 关键词:离散时空;定子‑动子模型;涌现引力;暗能量;量子纠缠;可证伪理论;光速;双缝干涉 Abstract The Stator‑Rotor Cosmic Model (SRCM‑v1.4) is a speculative unified physical framework built upon discrete spacetime. It postulates two fundamental ontological entities: stators, indivisible static spatial lattice sites, and rotors, the dynamical minimal units of energy. Space adopts rhombic‑dodecahedral close‑packing (face‑centered cubic lattice), while time consists of discrete frames of Planck‑time duration. Nine foundational axioms are proposed. Three core functions—the stator potential Φₛ, rotor‑cluster function Ψᵣ, and global synchronization constraint field Γ—govern the coupled dynamical evolution. Relativistic effects, quantum‑mechanical behaviours, gravity, and cosmic expansion are interpreted as macroscopic emergent phenomena arising from underlying lattice rules. Within this framework, the speed of light is directly derived from the stator lattice spacing and frame duration. Cosmic accelerated expansion does not require a physical dark‑energy substance; it originates from self‑replication of quiescent stators. Mass is not an intrinsic property of rotors but an inertial resistance produced by the coupling between rotor‑clusters and the stator potential. The 125 GeV resonance observed at the LHC is interpreted as a nonlinear excitation of the stator potential rather than an elementary Higgs boson. Quantum entanglement is treated as a global logical constraint without superluminal physical signal transmission. Chiral fermions and parity violation originate from geometric asymmetry of two types of tetrahedral voids in the lattice. A candidate dark‑matter mass window of 1~12 MeV and a big‑rip cosmic fate are predicted. This work provides a full set of falsifiable predictions together with corresponding experimental discriminators, attempting to offer a unified picture for particle‑physics and cosmological puzzles including the speed of light, Hubble tension, dark energy, dark matter, CMB, the origin of gauge symmetries, and double‑slit interference. The full manuscript can be fed directly into large‑language models for interactive research, making full use of AI to study the model. For instance, users may ask the AI specific questions such as “derivation of double‑slit interference” to obtain corresponding physical derivations and detailed explanations. This manuscript has not undergone peer‑review. Several derivations remain at the qualitative‑framework level; some parameters rely on external observational inputs. Tasks including the rigorous continuous‑limit derivation of general relativity and complete rotor‑cluster configurations for all Standard‑Model particles are work‑in‑progress. The validity of the model shall ultimately be judged by future physical experiments and rigorous mathematical analysis. Keywords: discrete spacetime; stator‑rotor model; emergent gravity; dark energy; quantum entanglement; falsifiable theory; speed of light; double‑slit interference

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