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September 12, 20250 citations

Relational Entropy Gravity Theory: A Framework for Gravitational Emergence

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SSSami Shibah

Key Points

  • The theory reveals gravity's emergence from a relational coherence lattice, suggesting a new understanding of gravitational phenomena.
  • Key findings include predictions of asymmetric gravitational wave chirp patterns and shifts in quantum entanglement correlations.
  • The framework employs numerical simulations and experimental strategies, including instruments like LIGO and JWST, to support its claims.
  • These insights may address longstanding issues in cosmology, such as the well-known Hubble tension, pending further empirical validation.

Abstract

Abstract The Relational Entropy Gravity Theory (REGT) presents a novel framework positing that gravity emerges from a pre-spacetime relational coherence lattice composed of abstract states \ (R₈₉\), optimized through a coherence entropy metric \ (S\) inspired by quantum information theory and entropic principles. Drawing from relational quantum mechanics and lattice models, REGT derives Newtonian gravity and Einstein's field equations in the classical limit while forecasting verifiable deviations, including asymmetric gravitational wave chirp patterns (\ (h 10^-23\) ), quantum entanglement correlation shifts (\ (C / C₆ₑ 10^-5\) ), scale-dependent redshift oscillations (\ (z 10^-6\) ), and lattice defect-induced gauge fields observable at high energies. Supported by detailed derivations, numerical simulations, and experimental protocols utilizing instruments such as LIGO/Virgo, LHCb, and JWST/DESI, this discrete approach addresses quantum gravity infinities and offers implications for cosmology, such as resolving Hubble tension, pending empirical validation.

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Cite This Study

Sami Shibah (2025) studied this question.

synapsesocial.com/papers/68d44c4631b076d99fa559c1https://doi.org/10.21203/rs.3.rs-7581451/v1
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