From Information to Reality: Informational Quantum Gravity (IQG) as a Unified Framework with Transformative Potential

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Abstract

Informational Quantum Gravity (IQG) presents a transformative framework that unifies quantum mechanics (QM), general relativity (GR), and the Standard Model (SM) by redefining reality’s foundation as quantum informational density ρ rather than matter. At its core lies the Primordial Informational Field (PIF), a universal substrate structured by discrete Quantules, where ρ-flows, driven by entropy gradients (Sent), govern the emergence of particles, forces, and spacetime. This equation, ▫ρ-λρ2+μρ3+η∂ρ∂t=Sent∇⋅v+Vunified(ρ,x,t), encapsulates IQG’s dynamics, proposing resolutions to paradoxes like singularities, black hole information loss, and the measurement problem. IQG aligns with frameworks like the Quantum Memory Matrix (QMM), which views space-time as an information reservoir, while extending beyond QMM’s scope with a broader, testable paradigm. Recent QMM experiments lend empirical support to informational physics, enhancing IQG’s relevance. IQG predicts observable effects—gravitational wave distortions (~10⁻³ Hz shifts), cosmological lensing (~10⁻⁵ arcsec), and quantum coherence anomalies—accessible via LIGO, Euclid, and quantum simulators. By recasting the universe as an entropy-driven informational network, IQG offers a unified lens for physics and transformative applications in quantum technologies.

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License: CC-BY-4.0