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June 29, 20260 citationsOpen Access

General Relativity as the Coherent Limit of a Finite-Response Medium: A Unified ECSM Parent Action, Strong-Field Completion, and Singularity Avoidance

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ASAdam Sheldrick

Key Points

  • This work aims to derive the gravitational dynamics from an Emergent Condensate-Superfluid Medium framework and explore its implications in strong-field conditions.
  • Utilized a finite tensor response and coherent phases to derive metrics through a matrix-exponential map.
  • Assessed the dynamics using a coherent massless spin-2 phase and universal coupling to total stress-energy.
  • Performed coupled parent-field perturbation calculations to derive explicit tidal deformation benchmarks.
  • Established a unified effective action resulting in Einstein-Hilbert dynamics from coherent limits. The first tidal deformability measures were k2 approximately 3.74 x 10^-5 and Lambda approximately 1.03 x 10^-3 for compact objects.
  • Demonstrated that parent-field corrections can shift the Love-number zero crossing, indicating significant modifications under certain conditions.

Abstract

This work presents a unified effective derivation of the gravitational sector of the Emergent Condensate-Superfluid Medium (ECSM) framework. A finite tensor response, medium amplitude, coherent phase, and coherence field generate an emergent metric through a matrix-exponential map. Assuming a coherent massless spin-2 Fierz-Pauli phase and universal coupling to total stress-energy, the nonlinear tensor sector closes onto Einstein-Hilbert dynamics. The coherent limit recovers Newtonian gravity, the general-relativistic post-Newtonian parameters, two luminal tensor polarizations, the exact Schwarzschild exterior, and the linear Kerr exterior. Finite strain capacity and finite response time terminate the formal coherent continuation at a threshold outside the divergent limit and replace it with a regular finite-response shell and finite-density core. Horizon-like behaviour may remain as a regular transport-characteristic boundary without degeneration of the metric determinant. The paper also reports the first quantitative tidal-deformability benchmarks for the regular ECSM compact-object branches. A compact-support benchmark with compactness C = 0. 475 gives k2 approximately 3. 74 x 10^-5 and Lambda approximately 1. 03 x 10^-3. A coupled parent-field perturbation calculation recovers the reduced tidal equation in the frozen-field limit and demonstrates that parent-field corrections can shift or conditionally reverse the reduced Love-number zero crossing within explicit locally positive projected-Hessian closures. The construction is presented as a sufficient unified effective parent-action framework, not as a unique microscopic theory, a parameter-free prediction, or experimental confirmation. The publication record includes the executed N29R, N30R, and N31R notebooks and their complete evidence archives.

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Cite This Study

Adam Sheldrick (2026) studied this question.

synapsesocial.com/papers/6a420b2ff91bb43ea9192488https://doi.org/10.5281/zenodo.20968070
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