Matter Organization: A Unified Theory in which Fields, Particles, and Cosmic Structure Emerge from the Dynamical Organization of a Single Fundamental Entity.《物质组织学:单一基础实体经动力学组织涌现场、粒子与宇宙结构的统一理论》

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Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-19
DOI
https://doi.org/10.5281/zenodo.22845655
Primary Topic
Modular Robots and Swarm Intelligence
Type
preprint
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preprint

Matter Organization: A Unified Theory in which Fields, Particles, and Cosmic Structure Emerge from the Dynamical Organization of a Single Fundamental Entity.《物质组织学:单一基础实体经动力学组织涌现场、粒子与宇宙结构的统一理论》

卫星 梁
Zenodo (CERN European Organization for Nuclear Research)
Modular Robots and Swarm Intelligence
preprint

Matter Organization: A Unified Theory in which Fields, Particles, and Cosmic Structure Emerge from the Dynamical Organization of a Single Fundamental Entity.《物质组织学:单一基础实体经动力学组织涌现场、粒子与宇宙结构的统一理论》

卫星 梁
preprint en

Abstract

Abstract We propose a unified dynamical framework in which matter, fields, and particle-like structures are not treated as fundamentally distinct ontological categories. Instead, the theory begins from a single type of material entity and attributes observable physical diversity to differences in its dynamical organization, relative configuration, and internal state. Within this framework a field is interpreted as a collective dynamical manifestation of the underlying material substrate, while particle-like objects are treated as persistent localized organizations of the same underlying degrees of freedom. The central objective is therefore not to unify independently postulated particles and fields at the level of an effective description, but to derive both from a common microscopic ontology and a common dynamical law. The theory develops interaction, collective response, localized structure formation, and structural persistence within one and the same material dynamics, introducing no separate field substance as an additional fundamental entity. Concretely, the framework is realized as a single Cosserat-type material continuum—described by density, velocity, and an internal direction field—so that interactions, responses, and localized structures all follow from one variational principle. Particular emphasis is placed on the distinction between local structural stability and true long-time persistence: for periodic systems, persistence is formulated directly in terms of bounded relative motion in continuous covering space, so that bounded motion inside a simulation cell cannot be mistaken for genuine dynamical confinement. This construction defines a matter-organization program for fundamental physics, in which microscopic entities, field-like behavior, particle-like structures, and larger-scale organization are treated as successive dynamical regimes of a single underlying material system. The present work establishes the conceptual and mathematical framework, derives exact structural criteria for several classes of persistence and transport behavior, and identifies the remaining unresolved conditions required for infinite-time stability at finite temperature. The resulting theory is intended as a falsifiable route toward a unified description in which physical structure emerges from organization rather than from multiple independent ontological building blocks. Methodologically, the present work and the earlier *Poleon Matter‑Field Unified Theory* represent two opposite research routes. The former adopts a top‑down unification paradigm: beginning from a unified material field and a unified action, the four fundamental forces and particle species are treated as specific manifestations within that unified framework, so that unification plays the role of a premise. The present framework adopts a bottom‑up generative paradigm: starting from a single fundamental entity and a single dynamical law, fields and particles are not pre‑given objects to be unified but persistent configurations of one and the same underlying degrees of freedom at different organizational levels; unification is not a premise but the outcome of dynamical organization. The two share the same underlying mathematics (single entity ℘, the three‑variable field, a Cosserat‑type continuum, the unified variational principle); what differs is solely the direction in which "unification" is anchored. 摘要 我们提出一个统一动力学框架,其中物质、场与类粒子结构不被视为本体论上彼此独立的基本范畴。该理论从单一类型的物质实体出发,将可观测的物理多样性归因于其在动力学组织、相对组态与内部状态上的差异。在此框架下,场被理解为底层物质基底的集体动力学体现,而类粒子对象则是同一组底层自由度的持久定域化组织。 因此,核心目标并非在有效描述层面对相互独立设定的粒子与场做统一,而是从共同的微观本体与共同的动力学定律推导出二者。该理论在同一物质动力学之中发展出相互作用、集体响应、定域结构形成与结构持续性,不引入任何作为额外基本实体的独立场物质。具体而言,框架实现为一个单一的 Cosserat 型物质连续体(密度、流速与内部方向场),所有结构均由同一条变分原理导出。我们特别强调局部结构稳定性与真实长时持续性之间的区别:对周期系统,持续性直接由连续覆盖空间中的有界相对运动来表述,从而模拟元胞内的有界运动不会被误认为真正的动力学禁闭。 这一构造定义了基础物理的“物质组织学”纲领:微观实体、类场行为、类粒子结构与更大尺度的组织,被视为同一底层物质系统相继的动力学 regime。本文建立概念与数学框架,推导若干类持续性与输运行为的严格结构判据,并指认有限温下实现无穷时长稳定性所剩余的未决条件。所得理论旨在提供一条可证伪的统一描述路径——其中物理结构由组织涌现,而非源于多个相互独立的本体论积木。 在方法论上,本工作与前期《极子物质场统一理论》代表两条相反的研究进路。前者采取自上而下的统一范式:以统一的物质场与统一作用量为出发点,将四类基本力与各类粒子视为该统一框架下的特定表现,统一在构造中起前提作用。本框架采取自下而上的生成范式:从单一基础实体与单一动力学定律出发,场与粒子并非被统一的既有对象,而是同一组底层自由度在不同组织层级上的持续构型;统一不是前提,而是动力学组织涌现的结果。两者共享同一底层数学(单一实体 ℘、三变量场、Cosserat 型连续介质、统一变分原理),区别仅在于“统一”被锚定的方向。

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