Muon g-2 and Dark Matter suggest Non-Universal Gaugino Masses: case study at the LHC
arXiv:1801.00514 · doi:10.1103/PhysRevD.97.115002
Abstract
We argue that in order to account for the muon anomalous magnetic moment , dark matter and LHC data, non-universal gaugino masses at the high scale are required in the framework of the Minimal Supersymmetric Standard Model (MSSM). We also need a right-handed smuon with a mass around 100 GeV, evading LHC searches due to the proximity of a neutralino several GeV lighter which allows successful dark matter. We discuss such a scenario in the framework of an Grand Unified Theory (GUT) combined with family symmetry, where the three representations form a single triplet of with a unified soft mass , while the three representations are singlets of with independent soft masses . Although (and hence ) may be light, the muon and relic density also requires light GeV, which is incompatible with universal gaugino masses due to LHC constraints on and arising from gaugino searches. After showing that universal gaugino masses at the GUT scale are excluded by gluino searches, we provide a series of benchmarks which show that while is also excluded by chargino searches, is currently allowed. Even this scenario is almost excluded by the tension between the muon , relic density, Dark Matter direct detection and LHC data. The surviving parameter space is characterised by a higgsino mass GeV, as required by the muon . The LHC will be able to fully test this scenario with the upgraded luminosity via muon-dominated tri- and di-lepton signatures resulting from higgsino dominated and production.
23 pages, 10 figures
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