A New Mechanism for Celestial Evolution: A Unified Model of Iron-Nickel Core Aggregation and Gravitational Activation

Fuente: Zenodo
Guardado en:
Detalles Bibliográficos
Autor principal: Bian, Zhenfeng
Formato: Recurso digital
Lenguaje:inglés
Publicado: Zenodo 2026
Materias:
Acceso en línea:
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
_version_ 1866901892785766400
author Bian, Zhenfeng
author_facet Bian, Zhenfeng
contents <p>Abstract (English)</p> <p> </p> <p>The traditional theory of celestial formation, grounded in gravitational collapse and stochastic density fluctuations, fails to explain three key observational puzzles: the rapid formation of massive galaxies in the extreme early universe, the ubiquitous dense iron cores in terrestrial planets with abundances far exceeding nebular averages, and how diffuse hydrogen-helium nebulae overcome thermal motion barriers to undergo ordered collapse. This paper proposes the iron-nickel core coalescence hypothesis and constructs a unified physical model spanning microscopic magnetic interactions to macroscopic gravitational evolution. The model delineates three core stages of celestial formation: (1) nucleation, where ferromagnetic Fe/Ni elements coalesce via intrinsic magnetic moments and directional Field Energy Aggregation Force (FEAF) to form stable solid cores; (2) activation, where FEAF undergoes a phase transition from ferromagnetic-selective attraction to global universal attraction once the core density exceeds a critical threshold, thus activating macroscopic gravitation; (3) growth, where post-activation positive feedback accretion drives rapid spherical collapse. This model unifies permanent magnetic order with gravitational fields for the first time, establishing a consistent evolutionary paradigm for both planetary and stellar formation. It further reveals the stage-dependent evolutionary nature of gravitation, providing a novel physical framework to re-examine the origin and essence of gravitation, and offers quantitative explanations for major astrophysical observational anomalies, including the JWST-detected high-redshift massive galaxies and the universal iron-core structure of super-Earths.</p> <p> </p> <p>摘要 (中文)</p> <p> </p> <p>传统天体形成理论以引力坍缩和随机密度涨落为核心,难以合理解释三大关键观测难题:宇宙极早期大质量星系的快速形成、类地行星普遍存在远超星云平均丰度的致密铁核、弥散氢氦星云如何突破热运动壁垒实现有序坍缩。本文提出铁镍核心抱团假说,构建一套从微观磁相互作用到宏观引力演化的统一物理模型,系统阐释天体形成的三大核心阶段:(1)成核阶段,铁、镍等铁磁元素通过固有磁矩与定向场能聚合力(FEAF)优先团聚,形成稳定固态核心;(2)激活阶段,当核心密度突破临界阈值,场能聚合力从铁磁选择性吸引相变为全域广谱吸引,宏观引力由此被激活;(3)增长阶段,引力激活后,正反馈吸积机制驱动物质快速坍缩并形成球状天体。本模型首次实现永磁序与引力场的统一,建立了行星与恒星形成的一致演化范式,同时揭示了引力的阶段性演化特征,为重新审视引力的起源与本质提供了全新物理框架,并对詹姆斯·韦伯望远镜观测到的高红移大质量星系、超级地球铁核普遍性等重大天体物理观测异常给出了定量解释。</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18691165
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle A New Mechanism for Celestial Evolution: A Unified Model of Iron-Nickel Core Aggregation and Gravitational Activation
Bian, Zhenfeng
Celestial evolution,天体演化,Star formation,恒星形成,Planet formation,行星形成,Iron-nickel core,铁镍核心,Permanent magnetic interaction,永磁相互作用,Field Energy Aggregation Force,场能聚合力,Gravitational activation,引力激活,Positive feedback accretion,正反馈吸积,High-redshift galaxies in the early universe,早期宇宙高红移星系,Population III stars,星族III恒星,Extremely metal-poor stars,极贫金属星
Astrophysics,天体物理,Cosmology,宇宙学,Stellar astronomy,恒星天文学,Planetary science,行星科学
<p>Abstract (English)</p> <p> </p> <p>The traditional theory of celestial formation, grounded in gravitational collapse and stochastic density fluctuations, fails to explain three key observational puzzles: the rapid formation of massive galaxies in the extreme early universe, the ubiquitous dense iron cores in terrestrial planets with abundances far exceeding nebular averages, and how diffuse hydrogen-helium nebulae overcome thermal motion barriers to undergo ordered collapse. This paper proposes the iron-nickel core coalescence hypothesis and constructs a unified physical model spanning microscopic magnetic interactions to macroscopic gravitational evolution. The model delineates three core stages of celestial formation: (1) nucleation, where ferromagnetic Fe/Ni elements coalesce via intrinsic magnetic moments and directional Field Energy Aggregation Force (FEAF) to form stable solid cores; (2) activation, where FEAF undergoes a phase transition from ferromagnetic-selective attraction to global universal attraction once the core density exceeds a critical threshold, thus activating macroscopic gravitation; (3) growth, where post-activation positive feedback accretion drives rapid spherical collapse. This model unifies permanent magnetic order with gravitational fields for the first time, establishing a consistent evolutionary paradigm for both planetary and stellar formation. It further reveals the stage-dependent evolutionary nature of gravitation, providing a novel physical framework to re-examine the origin and essence of gravitation, and offers quantitative explanations for major astrophysical observational anomalies, including the JWST-detected high-redshift massive galaxies and the universal iron-core structure of super-Earths.</p> <p> </p> <p>摘要 (中文)</p> <p> </p> <p>传统天体形成理论以引力坍缩和随机密度涨落为核心,难以合理解释三大关键观测难题:宇宙极早期大质量星系的快速形成、类地行星普遍存在远超星云平均丰度的致密铁核、弥散氢氦星云如何突破热运动壁垒实现有序坍缩。本文提出铁镍核心抱团假说,构建一套从微观磁相互作用到宏观引力演化的统一物理模型,系统阐释天体形成的三大核心阶段:(1)成核阶段,铁、镍等铁磁元素通过固有磁矩与定向场能聚合力(FEAF)优先团聚,形成稳定固态核心;(2)激活阶段,当核心密度突破临界阈值,场能聚合力从铁磁选择性吸引相变为全域广谱吸引,宏观引力由此被激活;(3)增长阶段,引力激活后,正反馈吸积机制驱动物质快速坍缩并形成球状天体。本模型首次实现永磁序与引力场的统一,建立了行星与恒星形成的一致演化范式,同时揭示了引力的阶段性演化特征,为重新审视引力的起源与本质提供了全新物理框架,并对詹姆斯·韦伯望远镜观测到的高红移大质量星系、超级地球铁核普遍性等重大天体物理观测异常给出了定量解释。</p>
title A New Mechanism for Celestial Evolution: A Unified Model of Iron-Nickel Core Aggregation and Gravitational Activation
topic Celestial evolution,天体演化,Star formation,恒星形成,Planet formation,行星形成,Iron-nickel core,铁镍核心,Permanent magnetic interaction,永磁相互作用,Field Energy Aggregation Force,场能聚合力,Gravitational activation,引力激活,Positive feedback accretion,正反馈吸积,High-redshift galaxies in the early universe,早期宇宙高红移星系,Population III stars,星族III恒星,Extremely metal-poor stars,极贫金属星
Astrophysics,天体物理,Cosmology,宇宙学,Stellar astronomy,恒星天文学,Planetary science,行星科学
url https://doi.org/10.5281/zenodo.18691165