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April 7, 20260 citationsOpen Access

Gravity as Constraint and Entanglement as Capacity: A Unified Structural Account in Temporal Rate Ontology

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GKGeorgios Kouvidis

Key Points

  • The goal is to unify gravity and quantum entanglement within the Temporal Rate Ontology framework.
  • Developed a structural account within Temporal Rate Ontology (TRO).
  • Identified the continuation multiplicity of a directed acyclic graph as a common object.
  • Demonstrated structural equivalence between the TRO constraint parameter and the gravitational time dilation field.
  • Derived the Gravity-Entanglement Coupling Proposition based on increased gravitational constraints.
  • Established that increased gravity drives the continuation measure toward factorizability.
  • Unified wormhole geometry and quantum entanglement as projections of the same structure.
  • Showed that near black hole horizons, entanglement capacity decreases and information becomes inaccessible.

Abstract

We develop a unified structural account of gravity and quantum entanglement within Temporal Rate Ontology (TRO), a pregeometric framework in which ordered temporal succession is ontologically primitive. Both phenomena are shown to be controlled by a single underlying object: the continuation multiplicity Ω of a directed acyclic graph (DAG). Entanglement is the global coupling of continuation capacity across subsystems; gravity is the local rate at which continuation capacity is suppressed, encoded via a temporal rate field. We make this identification precise by showing that the constraint parameter λ of the TRO decoherence kernel is structurally equivalent to the temporal rate field τ that encodes gravitational time dilation in the TRO cosmological program. From this identification we derive a Gravity-Entanglement Coupling Proposition: increasing gravitational constraint drives the joint continuation measure toward factorizability, recovering gravitational decoherence as an inevitable structural consequence rather than an additional postulate. We further show that the ER = EPR correspondence acquires a natural pregeometric interpretation: wormhole geometry and quantum entanglement are dual projections of the same non-factorizable DAG continuation structure onto geometric and quantum-mechanical representation schemes respectively. Near black hole horizons, the collapse of continuation multiplicity simultaneously suppresses entanglement capacity and produces the projection-induced information inaccessibility established in earlier work, unifying three previously separate results within the TRO program. The framework requires no new dynamics, no Hilbert space ontology, and no background spacetime.

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Cite This Study

Georgios Kouvidis (2026) studied this question.

synapsesocial.com/papers/69d49fc5b33cc4c35a2282ddhttps://doi.org/10.5281/zenodo.19430047
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