New Predictive Framework for Fermion Masses in SUSY SO(10)
Abstract
We present a new predictive approach based on SUSY theory. The inter-family hierarchy is first generated in the sector of hypothetical superheavy fermions and then transfered inversely to ordinary quarks and leptons by means of the universal seesaw mechanism. The obtained mass matrices are simply parametrized by two small complex coefficients and , which can be given by the ratio of the GUT scale GeV and some higher scale GeV (presumably superstring scale). The model provides a possibility for doublet-triplet splitting without fine tuning and the Higgsino mediated operators for the proton decay are naturally suppressed. Our ansatz provides the correct {\em qualitative} picture of fermion mass hierarchy and mixing pattern, provided that . The running masses of the first family fermions: electron, u-quark and d-quark obey an approximate symmetry limit. At GUT scale we have: , and . The Cabibbo angle is large: while other mixing angles have their natural size: and . We have many strong {\em quantitative} predictions though no special `zero' texture is utilized (in contrast to the known predictive frameworks). Namely, taking as input the lepton, c-quark and b-quark masses, mass ratio and Cabibbo angle, we can obtain the light (u,d,s) quark masses, top mass and . The top quark is naturally in the 100 GeV range, but not too heavy: GeV. The lower bound GeV (160 GeV)
Cite
@article{arxiv.hep-ph/9407264,
title = {New Predictive Framework for Fermion Masses in SUSY SO(10)},
author = {Zurab G. Berezhiani},
journal= {arXiv preprint arXiv:hep-ph/9407264},
year = {2009}
}
Comments
22 pages, 5 figures (cut out as separate postscript file), LATEX, INFN-FE-05-94