Abstract

Building upon previous works, it is shown that two minimal left ideals of the complex Clifford algebra mathbb {C}ell (6) and two minimal right ideals of mathbb {C}ell (4) transform as one generation of leptons and quarks under the gauge symmetry SU(3)_Ctimes U(1)_{EM} and SU(2)_L respectively. The SU(2)_L weak symmetries are naturally chiral. Combining the mathbb {C}ell (6) and mathbb {C}ell (4) ideals, all the gauge symmetries of the Standard Model, together with its lepton and quark content for a single generation are represented. The combined ideals can be written as minimal left ideals of mathbb {C}ell (6)otimes mathbb {C}ell (4)cong mathbb {C}ell (10) in a way that preserves individually the mathbb {C}ell (6) structure and mathbb {C}ell (4) structure of physical states. This resulting model captures many of the attractive features of the Georgi and Glashow SU(5) Grand Unified Theory without introducing proton decay or other unobserved processes. Such processes are naturally excluded because they do not preserve the underlying algebraic structure.

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