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Couplings of Vector-Spinor Representation for SO(10) Model Building

High Energy Physics - Phenomenology 2009-11-11 v1

Abstract

Higgs multiplet in the vector-spinor representations of SO(10), i.e., the 144+144ˉ144+\bar{144} multiplet can break the SO(10) gauge symmetry spontaneously in one step down to the Standard Model gauge group symmetry SU(3)C×SU(2)L×U(1)YSU(3)_C\times SU(2)_L\times U(1)_Y and a recent analysis has used such vector-spinors for building a new class of SO(10) grand unification models (hep-ph/0506312) . Here we discuss the techniques for the computation of several classes of vector-spinor couplings using the Basic Theorem on the SO(2N) vertex expansion developed by the authors. The computations include the cubic couplings of the vector-spinors with SO(10) tensors, quartic self-couplings of the vector-spinors, and couplings of the vector-spinors with spinor representations of SO(10). The last set include couplings of vector-spinors with the 16-plets of quarks and lepton and with the 16 and 16ˉ\bar{16} of Higgs. These couplings provide a crucial tool for further development of the SO(10) grand unification using vector-spinor representations. These include study of quark-lepton masses, analysis of dimension five operators including baryon and lepton number violating operators, and study of neutrino masses and mixings. Illustrative examples are given for their computation using a sample of vector-spinor couplings.

Keywords

Cite

@article{arxiv.hep-ph/0511172,
  title  = {Couplings of Vector-Spinor Representation for SO(10) Model Building},
  author = {Pran Nath and Raza M. Syed},
  journal= {arXiv preprint arXiv:hep-ph/0511172},
  year   = {2009}
}

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59 pages