English

A Model of Yukawa Hierarchies

High Energy Physics - Phenomenology 2009-10-30 v2 High Energy Physics - Theory

Abstract

We present a model for the observed hierarchies among the Yukawa couplings of the standard model in the context of an effective low energy theory with an anomalous U(1) symmetry. This symmetry, a generic feature of superstring compactification, is a remnant of the Green-Schwarz anomaly cancellation mechanism. The gauge group is that of the standard model, augmented by X, the anomalous U(1), and two family-dependent phase symmetries Y(1)Y^{(1)} and Y(2)Y^{(2)}. The correct hierarchies are reproduced only when sin2θw=3/8sin^2\theta_w=3/8 at the cut-off. To cancel anomalies, right-handed neutrinos and other standard model singlets must be introduced. Independently of the charges of the right-handed neutrinos, this model produces the same neutrino mixing matrix and an inverted hierarchy of neutrino masses. The heaviest is the electron neutrino with a mass 1\sim 1 meV, and mixing of the order of λc3\lambda_c^3 with each of the other two neutrinos.

Cite

@article{arxiv.hep-ph/9705270,
  title  = {A Model of Yukawa Hierarchies},
  author = {John K. Elwood and Nikolaos Irges and Pierre Ramond},
  journal= {arXiv preprint arXiv:hep-ph/9705270},
  year   = {2009}
}

Comments

15 pages, no figures, LaTex. Revised version, containing minor typographical corrections, as well as a substantial revision of the final three paragraphs of the text. Submitted to Physics Letters B