The Reach of the Fermilab Tevatron and CERN LHC for Gaugino Mediated SUSY Breaking Models
arXiv:hep-ph/0110270 · doi:10.1103/PhysRevD.65.075024
Abstract
In supersymmetric models with gaugino mediated SUSY breaking (inoMSB), it is assumed that SUSY breaking on a hidden brane is communicated to the visible brane via gauge superfields which propagate in the bulk. This leads to GUT models where the common gaugino mass is the only soft SUSY breaking term to receive contributions at tree level. To obtain a viable phenomenology, it is assumed that the gaugino mass is induced at some scale beyond the GUT scale, and that additional renormalization group running takes place between and as in a SUSY GUT. We assume an SU(5) SUSY GUT above the GUT scale, and compute the SUSY particle spectrum expected in models with inoMSB. We use the Monte Carlo program ISAJET to simulate signals within the inoMSB model, and compute the SUSY reach including cuts and triggers approriate to Fermilab Tevatron and CERN LHC experiments. We find no reach for SUSY by the Tevatron collider in the trilepton channel. %either with or without %identified tau leptons. At the CERN LHC, values of (1160) GeV can be probed with 10 (100) fb of integrated luminosity, corresponding to a reach in terms of of 2150 (2500) GeV. The inoMSB model and mSUGRA can likely only be differentiated at a linear collider with sufficient energy to produce sleptons and charginos.
17 page revtex file with 9 PS figures
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