Extension of the KFQubit framework: Phase 5 Reinterpretation of LHC γγ data using a universal scalar Lagrangian
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The present work constitutes Phase 5 of the KFQubit theoretical framework and introduces the first direct comparison between the model and experimentally measured high-energy data.Using raw CMS γγ events from the CERN Open Data Portal (record 15006), we apply a universal scalar Lagrangian derived from the baryonic field structure developed in Phases 1–4. The effective potential contains quadratic, quartic and inverse terms with no free parameters, predicted from the energetic, stability and coherence properties of the KFQubit field.Thresholds and regime transitions identified in the potential are used to classify γγ events, yielding reproducible subsets across all CMS datasets (A–D).Statistical tests (K–S, χ² and p-values) show that the threshold-defined subset cannot be explained by Standard Model fluctuations alone. This work represents the first bridge between the KFQubit framework and collider physics, demonstrating that the universal baryonic field may produce detectable signatures even at TeV scales. All analysis code and event files are provided to ensure full reproducibility.



