English

Flavor Violation in a Minimal SO(10)\times A_4 SUSY GUT

High Energy Physics - Phenomenology 2011-12-30 v2

Abstract

Flavor violating processes in the quark and lepton sectors are investigated within a realistic supersymmetric SO(10)×A4SO(10)\times A_4 grand unification model. By employing exotic heavy fermion fields, this model successfully describes various features of the fermion masses and mixings including large neutrino mixings accompanied by small quark mixings. In this model the flavor violation is induced at GUT scale, at which A4A_4 flavor symmetry is broken, as a consequence of the large mixings of the light fermion fields with these exotic heavy fields. The stringent experimental constraint from μeγ\mu\rightarrow e\gamma decay rate necessitates a high degree of degeneracy of the supersymmetry breaking soft scalar masses of the exotic heavy fields and supersymmetric scalar partners of the light fermion fields. The choice of slepton masses of order 1 TeV is found to be consistent with the constraints from branching ratio of μeγ\mu\rightarrow e\gamma and with all other flavor changing neutral current processes being sufficiently suppressed.

Keywords

Cite

@article{arxiv.1106.4070,
  title  = {Flavor Violation in a Minimal SO(10)\times A_4 SUSY GUT},
  author = {Abdelhamid Albaid},
  journal= {arXiv preprint arXiv:1106.4070},
  year   = {2011}
}

Comments

31 pages, 2 figures; International Journal of Modern Physics A, Vol.27 (2012)