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      Charge quantization from a number operator

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          Abstract

          We explain how an unexpected algebraic structure, the division algebras, can be seen to underlie a generation of quarks and leptons. From this new vantage point, electrons and quarks are simply excitations from the neutrino, which formally plays the role of a vacuum state. Using the ladder operators which exist within the system, we build a number operator in the usual way. It turns out that this number operator, divided by 3, mirrors the behaviour of electric charge. As a result, we see that electric charge is quantized because number operators can only take on integer values. Finally, we show that a simple hermitian form, built from these ladder operators, results uniquely in the nine generators of \(SU(3)_c\) and \(U(1)_{em}\). This gives a direct route to the two unbroken gauge symmetries of the standard model.

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          Author and article information

          Journal
          2016-03-13
          Article
          10.1016/j.physletb.2015.01.023
          1603.04078
          7a4b05dc-e19f-43ec-91e6-48a0453f3d1b

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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          Phys.Lett.B, 742 (2015), pp. 195-199
          6 pages, 2 figures
          hep-th

          High energy & Particle physics
          High energy & Particle physics

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