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Breaking SU(3) Symmetry and Baryon Masses
Department of Physics and Astronomy, University of Kansas, Lawrence, USA
Department of Physics and Astronomy, University of Kansas, Lawrence, USA
Radiocarbon Dating Lab, University of Helsinki, Helsinki, Finland
- 1 Department of Physics and Astronomy, University of Kansas, Lawrence, USA
- 2 Department of Physics and Astronomy, University of Kansas, Lawrence, USA
- 3 Radiocarbon Dating Lab, University of Helsinki, Helsinki, Finland
Journal of Modern Physics·Volume 06 (2015)·Pages 1492–1497·Published 10 September 2015·DOI10.4236/jmp.2015.611153
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Abstract
Following the Projection-Gell-Mann Standard Model obtained from 5D homogeneous space-time, we extended to the definition of Strange and Charm quarks from the SU(3) fractional charged generators superposition representations, and calculated all the well-known baryon masses. The results indicate how the Orthogonality between the SU(2) × L and SU(3) × L manifolds is broken in the hadrons, such that the superposition of the time projection P o , and the conformal space projection P 1 are established, the basic requirement for General Relativity and the establishment of the Riemannian curvature in the presence of mass.
KeywordsGluonSU(3) BreakingBaryon Masses
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