The Quantum-Gravitational Threshold Hypothesis: A Unified Theory of Informational-Gravity and Cosmological Reality
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[Version 2 Update: Unified Framework & Weak Measurement]This revised edition consolidates the manuscript into a single, cohesive theory. It introduces explicit mathematical formulations for Weak Measurement and operational threshold gates (Thermal and Spacetime Bonding) to quantify the exact conditions required for wave-function collapse.Overview:The Quantum-Gravitational Threshold Hypothesis offers a deterministic, physical resolution to the profound divide between Quantum Mechanics and General Relativity. It posits that wave-function collapse is not an inherently random event, but a gravitational necessity triggered by the accumulation of "Informational Mass."By integrating Landauer's Principle with gravitational objective reduction, this framework translates the entropic cost of observation into a physical mass-energy equivalent. Ultimately, Gravity emerges not as a peer quantum force, but as the overarching geometric enforcer of classical reality.Key Highlights:• The Master Equation: A derived formula calculating exact collapse times based on spatial separation, mass, and the quantity of exchanged information.• Cosmological Solutions: Applies the informational-gravity engine to provide mechanical resolutions for Dark Matter, Dark Energy, Baryon Asymmetry, and the Arrow of Time.• Empirical Pathways: Proposes actionable experimental validations, including the novel Macroscopic Isolation Test and newly defined Weak Measurement protocols.



