Energy-Based Interpretation of General Relativity
Energy-Based Interpretation of General Relativity Short Description This hypothesis develops a speculative alternative interpretation of physical reality based on the framework of General Relativity. The starting assumption is: Universe = E The universe is understood as a connected energy system. In this interpretation, matter is not an independent fundamental building block, but a stable, bound, and organized state of the underlying energy. The hypothesis does not initially modify Einstein's field equations. The energy-momentum tensor remains the central mathematical description of the physical distribution of energy and momentum. Building on this, the hypothesis explores the possibility that fundamental energy propagates outward from a central white-hole state in the form of radial wave structures. These waves are understood as structures composed of photons. Through local interactions, oscillations, polarization, and gravitational feedback, stable bound energy states and therefore structures of matter could potentially emerge. The hypothesis also considers the Big Bang not necessarily as a completed one-time event, but as a possibly ongoing cosmological process of development. The proposed microscopic and cosmological mechanisms are explicitly speculative. Whether they can lead to mathematically consistent solutions and testable predictions remains an open question. The hypothesis is therefore not presented as an established physical theory, but as a starting point for possible further mathematical investigation.
Authors
- Andrew Robus
Publication Details
- Journal
- Zenodo (CERN European Organization for Nuclear Research)
- Published
- 2026-10-05
- DOI
- https://doi.org/10.5281/zenodo.23173893
- Primary Topic
- Relativity and Gravitational Theory
- Type
- preprint