Informational Recursive Tensor Fields in Cosmology: A Unified Framework Bridging Quantum Gravity, Dark Energy, and the Information Problem

Ajay Hagan · 2025

Modern physics faces enduring paradoxes—the incompatibility between General Relativity and Quantum Mechanics, the dark matter and dark energy conundrums, and the unexplained precision of fundamental constants. We introduce Informational Recursive Tensor Fields (IRTF), a framework where spacetime and quantum behavior emerge from a self-referential, probabilistic tensor field. This model unifies gravitational curvature with quantum fluctuations, resolving longstanding tensions between General Relativity and Quantum Mechanics. Within this architecture, dark energy and dark matter arise as emergent geometric modulations, while the observer is incorporated as a recursive agent influencing the evolution of physical law. Key predictions align with Planck, SDSS, and CMB datasets. By reconceiving constants and collapse as stable attractors in an informational field, IRTF offers a novel path forward for quantum gravity, cosmology, and the foundations of physics. This framework suggests a deeper informational architecture within reality - one that invites further exploration.

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