arXiv · hep-ph/0103280
Impact of Muon Anomalous Magnetic Moment on Supersymmetric Models
Abstract
The recent measurement of a_μ=\frac{g_μ-2}{2} by the E821 Collaboration at Brookhaven deviates from the quoted Standard Model (SM) central value prediction by 2.6σ. The difference between SM theory and experiment may be easily accounted for in a variety of particle physics models employing weak scale supersymmetry (SUSY). Other supersymmetric models are distinctly disfavored. We evaluate a_μfor various supersymmetric models, including minimal supergravity (mSUGRA), Yukawa unified SO(10) SUSY GUTs, models with inverted mass hierarchies (IMH), models with non-universal gaugino masses, gauge mediated SUSY breaking models (GMSB), anomaly-mediated SUSY breaking models (AMSB) and models with gaugino mediated SUSY breaking (inoMSB). Models with Yukawa coupling unification or multi-TeV first and second generation scalars are disfavored by the a_μmeasurement.
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Howard Baer, Csaba Balazs, Javier Ferrandis, Xerxes Tata. 2001-04-23. Impact of Muon Anomalous Magnetic Moment on Supersymmetric Models. https://doi.org/10.1103/physrevd.64.035004
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