Finite SU(3)^3 model
S. Heinemeyer (Cantabria Inst. of Phys.), E. Ma (UC, Riverside), M., Mondragon (UNAM, Mexico), G. Zoupanos (Natl. Tech. U., Athens)

TL;DR
This paper explores supersymmetric SU(3)^3 models for particle unification, identifying conditions for finiteness and analyzing their predictions for third-generation quark masses.
Contribution
It demonstrates that SU(3)^3 models can be finite with three families and examines their phenomenological implications for quark masses.
Findings
Three-family condition for finiteness
All-loop finite SU(3)^3 model predictions
Predicted third-generation quark masses
Abstract
We consider N=1 supersymmetric gauge theories based on the group SU(N)_1 x SU(N)_2 x ... x SU(N)_k with matter content (N,N*,1,...,1) + (1,N,N*,..., 1) + >... + (N*,1,1,...,N) as candidates for the unification symmetry of all particles. In particular we examine to which extent such theories can become finite, and find that a necessary condition is that there should be exactly three families. From phenomenological considerations an SU(3)^3 model is singled out. We consider an all-loop and a two-loop finite model based on this gauge group and we study their predictions concerning the third generation quark masses.
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