English

Unified Universal Seesaw Models

High Energy Physics - Phenomenology 2008-11-26 v1

Abstract

A set of Grand Unified Theories based upon the gauge groups SU(5)\L×SU(5)RSU(5)_\L \times SU(5)_\R, SO(10)\L×SO(10)RSO(10)_\L \times SO(10)_\R and SU(4)\C×SU(4)\L×SU(4)RSU(4)_\C \times SU(4)_\L \times SU(4)_\R is explored. Several novel features distinguish these theories from the well-known SU(5)SU(5), SO(10)SO(10) and SU(4)\C×SU(2)\L×SU(2)RSU(4)_\C \times SU(2)_\L \times SU(2)_\R models which they generalize. Firstly, Standard Model quarks and leptons are accompanied by and mix with heavy SU(2)\L×SU(2)RSU(2)_\L \times SU(2)_\R singlet partners. The resulting fermion mass matrices are seesaw in form. Discrete parity symmetries render the determinants of these mass matrices real and eliminate CP violating gauge terms. The unified seesaw models consequently provide a possible resolution to the strong CP problem. Secondly, \sinsq\sinsq at the unification scale is numerically smaller than the experimentally measured ZZ scale value. The weak angle must therefore increase as it evolves down in energy. Finally, proton decay is suppressed by small seesaw mixing factors in all these theories.

Keywords

Cite

@article{arxiv.hep-ph/9304223,
  title  = {Unified Universal Seesaw Models},
  author = {Peter Cho},
  journal= {arXiv preprint arXiv:hep-ph/9304223},
  year   = {2008}
}

Comments

22 pages with 2 figures not included but available upon request, CALT-68-1859

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