PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
April 3, 20260 citationsOpen Access

Spacetime Substantivalism V:The Cui Constant and the Constitutive Response of Spacetime: A Mechanical Unification of Galaxies, Black Holes, and Cosmic Voids

View Full Paper
HCHugang Cui

Key Points

  • This research introduces the Cui constant as a factor that determines how spacetime translates geometric curvature into gravitational responses across diverse cosmic structures.
  • Defined a geometric load parameter η = log10(A/M) to analyze effective area and mass.
  • Investigated cosmic voids, solar systems, galaxies, and black hole horizons under a unified constitutive spectrum.
  • Gathered empirical evidence spanning over twenty orders of magnitude.
  • Identified a null-response state (Cc = 0.000) in cosmic voids.
  • Observed a linear elastic phase (Cc = 1.000) in solar-scale systems.
  • Characterized a nonlinear amplification plateau (Cc ≃ 5.0) for galaxies.
  • Established a saturation limit (Cc = 6.670) at black hole horizons.

Abstract

AbstractWe introduce the Cui constant (Cc) as a universal constitutive amplification factor governing how spacetime converts geometric curvature into effective gravitational response. Defining the geometric load parameter η = log10(A/M), where A denotes the effective enclosing area and M the baryonic mass, we demonstrate that cosmic voids, solar systems, galaxies, and black hole horizons occupy distinct operating points on a single constitutive spectrum Cc(η). Empirical evidence spanning over twenty orders of magnitude reveals a complete constitutive spectrum: (i) a null-response state (Cc = 0.000) in cosmic voids, (ii) a linear elastic phase (Cc = 1.000) in solar-scale systems, (iii) a nonlinear amplification plateau (Cc ≃ 5.0) characteristic of galaxies, and (iv) a saturation limit (Cc = 6.670) at black hole horizons. This framework provides a unified mechanical ontology of gravitation without invoking dark matter or modifying the Einstein field equations, and yields falsifiable predictions in void lensing,black hole formation thresholds, and large-scale structure dynamics. 中文摘要:时空实体论 V】 本文引入了**“崔常数”(Cui constant, Cc)**作为普适的本构放大因子,用以统御时空如何将几何曲率转化为有效的引力响应。 通过定义几何负荷参数 eta = log10(A/M)(其中 A 代表有效包围面积,M 代表重子质量),我们证明了宇宙空洞、太阳系、星系以及黑洞视界,实际上都处于同一个本构光谱 Cc(eta) 上不同的运作点。 跨越二十个数量级的实证证据揭示了一个完整的本构光谱: 零响应状态(Cc = 0.000):对应宇宙空洞; 线性弹性阶段(Cc = 1.000):对应太阳系尺度系统; 非线性放大平台(Cc 约等于 5.0):星系的典型特征; 饱和极限(Cc = 6.670):对应黑洞视界。 该框架在无需引入暗物质或修改爱因斯坦场方程的情况下,提供了一种统一的引力力学本体论,并在空洞透镜效应、黑洞形成阈值以及大尺度结构动力学方面,给出了可证伪的科学预测。

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Hugang Cui (2026) studied this question.

synapsesocial.com/papers/69cf5fe05a333a821460eaeahttps://doi.org/10.5281/zenodo.19355917
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Spacetime Substantivalism V:The Cui Constant and the Constitutive Response of Spacetime: A Mechanical Unification of Galaxies, Black Holes, and Cosmic Voids2026
  2. 2Spacetime Substantivalism VI: A Universal Constitutive Law of Spacetime Response from Solar Systems to Black Hole2026
  3. 3Spacetime_Substantivalism_XVIII__The_Constitutive_Physics_of_the_Hubble_Tension A Unified Model from Matter Construction Energy Allocation to Spacetime Bandwidth Release (实体时空论 XVIII:哈勃张力的本构物理学——从物质建造能分配到时空带宽释放的统一模型)2026
  4. 4Spacetime Substantivalism 32: The Nature of the Graviton Revealed by Gravitational Wave Observations and the Grand Unification Reduction of Quantum Gravity—A Constitutive Audit and the Closure of Monistic Substantial Spacetime Dynamics (CSSD) V22026
  5. 5Spacetime_Substantivalism VIII: The Constitutive Nature of the Spacetime Lattice Under Gravitational Wave Empirical Evidence and the Physical Essence of CMB Anomalies2026