arXiv:hep-ph/9705383·v1·High Energy Physics — Phenomenology
New Mechanism of Flavor Symmetry Breaking from Supersymmetric Strong Dynamics
Christopher D. Carone (LBNL)🇺🇸 · Lawrence J. Hall (LBNL and UC Berkeley)🇺🇸 · Takeo Moroi (LBNL)🇺🇸
Abstract
We present a class of supersymmetric models in which flavor symmetries are broken dynamically, by a set of composite flavon fields. The strong dynamics that is responsible for confinement in the flavor sector also drives flavor symmetry breaking vacuum expectation values, as a consequence of a quantum-deformed moduli space. Yukawa couplings result as a power series in the ratio of the confinement to Planck scale, and the fermion mass hierarchy depends on the differing number of preons in different flavor symmetry-breaking operators. We present viable non-Abelian and Abelian flavor models that incorporate this mechanism.
Comments: 24 pp. LaTeX