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April 19, 20260 citationsOpen Access

Emergent Relational Geometrodynamics: Tensorial Stability, Structural Conservation, and Scaling Breakdown in Discrete Networks

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JTJuan Carlos Alves Tabernero

Key Points

  • This work aims to explore the role of emergent gravity in discrete relational systems and its stability properties.
  • Introduced a tensorial formulation for emergent gravity
  • Explored scaling degradation in small-world networks
  • Developed a relational field equation based on discrete Ricci curvature
  • Conducted finite-size numerical simulations to test hypotheses
  • Gravitational scaling collapses with increased topological disorder
  • Identified a measurable violation of a conservation identity
  • Demonstrated gravity as a stability property rather than a fundamental interaction

Abstract

This work introduces a tensorial formulation of emergent gravity in discrete relational systems. Extending previous results on scaling degradation in small-world networks, we propose a relational field equation based on discrete Ricci curvature and structural conservation. Finite-size numerical simulations demonstrate that gravitational scaling collapses under increasing topological disorder, correlating with a measurable violation of a conservation identity analogous to the Bianchi identity. These results suggest that gravity is not a fundamental interaction, but a stability property of geometrically coherent networks.

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Cite This Study

Juan Carlos Alves Tabernero (2026) studied this question.

synapsesocial.com/papers/69e4739a010ef96374d8f658https://doi.org/10.5281/zenodo.19637011
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