Phenomenological bounds on flavor-mixing contributions to the down-scalar-quark mass matrix

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Supersymmetric Partners Of Known Particles, Supergravity, Supersymmetry, Inclusive Production With Identified Leptons, Photons, Or Other Nonhadronic Particles

Scientific paper

A lower bound is derived on the flavor-mixing contribution (c) to the down-scalar-quark mass matrix by fitting the CP-violation parameter ɛ using scalar-quark and gluino masses consistent with phenomenology and the current experimental results on the top-quark mass and the bottom lifetime. An important predicton of this analysis is that like-sign dileptons should be observed with accumulating statistics at the CERN p¯p collider. The predicted values of c in existing N=1 supergravity-based models are also examined for consistency with the above phenomenological bound.

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