Published June 13, 2026 | Version v9
Preprint Embargoed

Relational Space-Time Ontology: Unification of Classical and Quantum Physics via Network Architecture

Description

This working paper introduces a topological framework for space-time, treating metric expansion and quantum interactions through a relational and discrete model. Preliminary computational simulations and analytical tests are presented to evaluate the framework's consistency against standard astronomical data and classical anomalies. Currently undergoing internal validation and peer-review.

Files

Embargoed

The files will be made publicly available on January 1, 2030.

Reason: Undergoing further private peer-review testing before public release.

Additional details

Software

Programming language
Python