many powerful tools for studying irreducible representations of SU(n), including making animations of hadron flavor-state multiplets
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Updated
Jul 25, 2021 - Python
many powerful tools for studying irreducible representations of SU(n), including making animations of hadron flavor-state multiplets
Yang-Mills Existence and Mass Gap via the Spectral Operator Framework — Tr(J_SU(3)) = 24 = Omega
Lattice QCD multi-quark flux-tube program: SU(2) high-statistics remeasurement to SU(3) 6q systems.
Integrated Python+hi_CLASS/MontePython framework implementing the Informational Graph Dynamics model for emergent locality and quantum-like behavior.
MIXED frustration fraction R across U(1), SU(2), SU(3) and SM gauge groups — lattice Monte Carlo + FSS (HGST E7)
Study and verify the U24 Yang-Mills mass gap with open data, code, and tests for coupling spectra, Wilson loops, and bounds
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