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Doubly Charmed Baryons and Lattice Resonance: Integrating the \Omega_{cc}^+ Discovery into the Universal Vortex & Entropy Hypothesis

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Zenodo2026-08-02 更新2026-08-13 收录
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Abstract The experimental completion of the ground-state doubly charmed baryon family—culminating in the observation of the \Omega_{cc}^+ (ccs) state by the LHCb collaboration—provides critical empirical constraints for hadron spectroscopy. Within the framework of the Universal Vortex & Entropy Hypothesis (UVEH) and Stationary Light Theory (SLT), these heavy diquark states are re-evaluated not as isolated point particles, but as dynamic transients governed by a discrete hexagonal lattice stabilized by a Mod 9 invariant and a 7-cycle periodic Sabbath break. This paper derives the mass-energy resonance coordinates, the drift expansion factor (\delta \approx 1.040028) corresponding to the 3I pulse sequence (8\text{-}13\text{-}8\text{-}5.200142\text{-}13\text{-}8), and the structural anchor mechanics that govern displaced decay vertices at the 5184 frequency threshold.

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2026-08-02
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