Accidental Peccei-Quinn Symmetry from Discrete Flavour Symmetry and Pati-Salam
arXiv:1711.05741 · doi:10.1016/j.physletb.2017.12.058
Abstract
We show how an accidental Peccei-Quinn (PQ) symmetry can arise from a discrete family symmetry combined with a discrete flavour symmetry , in a realistic Pati-Salam unified theory of flavour. Imposing only these discrete flavour symmetries, the axion solution to the strong problem is protected from PQ-breaking operators to the required degree. A QCD axion arises from a linear combination of triplet flavons, which are also responsible for fermion flavour structures due to their vacuum alignments. We find that the requirement of an accidental PQ symmetry arising from a discrete flavour symmetry constrains the form of the Yukawa matrices, providing a link between flavour and the strong problem. Our model predicts specific flavour-violating couplings of the flavourful axion and thus puts a strong limit on the axion scale from kaon decays.
14 pages, 2 figures