Complete Characterization of Nucleons within the SRE Framework: Unified Representation of Two-State Skeleton Inversion, Quark Speculation and Nuclear Reaction Validation
This paper provides a unified and complete characterization of nucleons within the State-Relational Entropy (SRE) dynamic framework: nucleons are stable composite objects emerging from binary self-organizing networks on the tripartite Y-shaped coherent core, constrained by the two-state opening/closing of dormant edges and closure degree rebalancing rules. Their ontological structure is the tripartite Y-shaped triangular closure Y₃⋉△₃ (V=12, E=18, β₁=7, |Aut|=36). The full text unfolds along a reproducible logical chain: (1) Establish the general methodology for nucleon derivation: local input → topological solution → inversion, which is homologous to electron derivation; (2) Propose three ontological speculations about quarks (quark ≠ Q₃, quark is an emergent statistical phenomenon, nuclear reaction = closure degree rebalancing) as structural priors for subsequent inversion; (3) Start from neutron β-decay, derive the structural constraints T1–T3 for the nucleon skeleton, and redefine isospin Z₂ as opening/closing duality, rather than flavor multiset flipping; (4) Establish the nucleon inversion simultaneous equation system, and obtain surviving candidates through three-step screening (integer determination of vertex number V=12, spectral ratio determination of topology, triple symmetry determination of solution); (5) Verify the two-state opening/closing mechanism of nuclear fission chain reactions: fast neutron cross-sections restore the same order of magnitude, excitation surplus criterion has a Pearson correlation of +0.932 with thermal cross-sections, and three-level signatures are unified (single nucleon β decay → composite nucleus fission → macroscopic chain criticality); (6) Derive the theoretical constraints that the additivity failure of ion/metal pairs can be theoretically predicted, and current is a coherent bookkeeping projection rather than continuous electron movement. This work does not prove that the SRE axioms are objectively true; all conclusions are self-consistent constructions within the SRE model, and real physical and chemical inferences must be independently verified by external means. 本文在状态‑关系熵(SRE)动力学框架下,对核子给出统一的完整刻画:核子是二元自组织网络三股 Y 形相干核上,经休眠边开合二态与闭合度再平衡规则约束后涌现的稳定复合对象,其本体结构为三股 Y 的三角闭合体 Y₃⋉△₃(V=12、E=18、β₁=7、|Aut|=36)。全文沿一条可复现的逻辑链展开: (1) 建立核子推演的方法学总纲:局部带入 → 拓扑求解 → 反推,与电子推衍同源; (2) 提出关于夸克的三条本体论推测(夸克≠Q₃、夸克是涌现统计现象、核反应=闭合度再平衡),作为后续反演的结构先验; (3) 从中子 β 衰变切入,导出核子骨架的结构约束 T1–T3,并重新定义同位旋 Z₂ 为开/闭二态,而非味道多重集翻转; (4) 建立核子反演联立方程系统,经三步筛选(整数性定顶点数 V=12、谱比定拓扑、三重对称定解)得到幸存候选; (5) 验证裂变链式反应的开闭二态机制:快中子截面恢复同量级、激发盈余判据与热截面 Pearson 相关 +0.932,三级签名统一(单核子β衰变→复合核裂变→宏观链式临界); (6) 推导出离子/金属性对加和失效的理论预见与电流是相干簿记投影而非电子持续移动的理论约束。 本工作不证明 SRE 公理客观成立;全部结论均为 SRE 模型内部的自洽性构造,现实物理与化学推论须经外部手段独立核验。
Authors
- Yue Lu (ORCID: https://orcid.org/0009-0008-3405-9170)
Publication Details
- Journal
- Zenodo (CERN European Organization for Nuclear Research)
- Published
- 2026-09-21
- DOI
- https://doi.org/10.5281/zenodo.22869670
- Primary Topic
- Nuclear physics research studies
- Type
- article
- Field-Weighted Citation Impact
- 0.00