Causal Memory Gravity XII: Local Loss of Criticality as a Measurement Mechanism and Stable Fermionic Outcomes
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Causal Memory Gravity XII studies measurement-like dynamics and stable fermionic outcomes within the Dynamic Planck Network framework. The paper develops the idea that measurement can be modeled as a local loss of criticality, where an overloaded network region leaves a near-critical coherent regime and relaxes into a stable dissipative outcome. In this formulation, classical outcomes are not imposed externally, but arise from local changes in network criticality, memory flow, and relational open-system dynamics. The document also connects this mechanism with fermionic stability, showing how conserved charge sectors can protect stable matter-like excitations within the CMG/DPN construction. It serves as the main CMG paper linking measurement, decoherence, criticality loss, and stable fermionic outcomes in the broader matter-sector programme.
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CMG_XII_Local_Loss_of_Criticality_as_a_Measurement_Mechanism.pdf
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Related works
- Is supplemented by
- Preprint: 10.5281/zenodo.19120017 (DOI)
- Preprint: 10.5281/zenodo.19163849 (DOI)