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January 25, 20260 citationsOpen Access

Gravitational Homeostasis and Baryonic Saturation: A Unified Field Theory of Compact Objects via Residual Metabolic Potential

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SFSergio Fucile

Key Points

  • The research aims to present a new theory linking gravity to the thermodynamics of baryonic matter through metabolic processes.
  • Proposed a scalar-tensor extension of General Relativity
  • Modeled baryonic matter as a homeostatic system
  • Analyzed phase transitions under gravitational pressure
  • Solved modified Tolman-Oppenheimer-Volkoff equations
  • Predicted stable, horizonless zero-entropy neutronic condensates (ZENCs)
  • Demonstrated that ZENCs mimic black holes
  • Identified a luminosity cutoff in relativistic jets linked to vacuum breakdown
  • Resolved singularity paradox and unified gravity with quantum electrodynamics

Abstract

AbstractWe propose a scalar-tensor extension of General Relativity where gravitational interaction emerges not as a fundamental geometric property, but as a Residual Metabolic Potential arising from the thermodynamic requirements of baryonic matter. We model the atom as a homeostatic system governed by a conserved information parameter ("Nuclear DNA"). Under extreme gravitational pressure, matter undergoes a smooth phase transition—governed by a sigmoidal saturation function η (P) —into a Zero-Entropy Neutronic Condensate (ZENC). Solving the modified Tolman-Oppenheimer-Volkoff (TOV) equations coupled to a saturation scalar field, we demonstrate that ZENCs are stable, horizonless objects that mimic Black Holes. The model predicts a specific electromagnetic signature: a luminosity cutoff in Relativistic Jets determined by the Schwinger Limit of vacuum breakdown (Ec ≈ 1. 3 × 10¹8 V/m), resolving the singularity paradox and unifying gravity with quantum vacuum electrodynamics. Python source code for the numerical simulation is included as a supplementary dataset.

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Cite This Study

Sergio Fucile (2026) studied this question.

synapsesocial.com/papers/6975b229feba4585c2d6da73https://doi.org/10.5281/zenodo.18352135
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Also Consider

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

  1. 1Saturation Gravity: A Conceptual and Interpretative Framework within General Relativity2026
  2. 2Gravitation as a Vacuum Energy Deficit within General Relativity (v12)2026
  3. 3Universal Saturation of the Informational Net: A Non-Linear Covariant Field Theory of Vacuum Coherence and Galactic Kinematics2026
  4. 4Universal Reactivity: Spacetime as a Non-Newtonian Viscous Medium and the Resolution of Singularities through Mechanical Saturation2026
  5. 5Horizon Dynamics: Gravitational Phenomenology from Boundary Thermodynamics2026