arXiv:hep-ph/9409215·v1·High Energy Physics — Phenomenology
Implications of TeV Flavor Physics for the \Delta I =1/2 Rule and the B-meson Semileptonic Branching Ratio
Abstract
Two of the outstanding discrepancies between weak interaction phenomenology and the standard model come in the large size of the enhancement in decays and in the small value of the semileptonic branching ratio. We argue that these discrepancies are naturally explained by chromomagnetic dipole operators arising from new physics at the TeV scale. These operators are closely connected to diagrams which contribute to the quark mass matrix, and we show how the proper enhancement of the hadronic decays of and quarks can be linked to generation of particular Cabbibo-Kobayaski-Maskawa mixing angles or quark masses. We confirm our model-independent analysis with detailed consideration of supersymmetric models and of technicolor models with techniscalars. This picture has additional phenomenological predictions for the system: The branching ratio of charmless nonleptonic decays should be of order 20\%, due to a large rate for , while there are no dangerous new contributions to . Sizable contributions to are a common feature of models incorporating this mechanism. In techniscalar models the coupling is enhanced, in association with sizable contributions to .
Comments: 52 pages+12 postscript figures, SLAC-PUB-6626