Report of the Beyond the MSSM Subgroup for the Tevatron Run II SUSY/Higgs Workshop

There are many low-energy models of supersymmetry breaking parameters which are motivated by theoretical and experimental considerations. Here, we discuss some of the lesser-known theories of low-energy supersymmetry, and outline their phenomenological consequences. In some cases, these theories hav...

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Veröffentlicht in:arXiv.org 2000-06
Hauptverfasser: Ambrosanio, S, Baer, H, Brignole, A, Castro, A, Chertok, M, Cheung, K, Clavelli, L, Cutts, D, Cvetic, M, Dooling, D, Dreiner, H, Dutta, B, Ellwanger, U, Everett, L, Feruglio, F, Giudice, G F, Gunion, J F, Hewett, J L, Hugonie, C, Kang, K, Kang, S K, Landsberg, G, Langacker, P, Mangano, M, McKay, D, Mohapatra, R N, Mrenna, S, Muller, D J, Rattazzi, R, Rizzo, T, Wang, J W, Wells, J D, Zwirner, F
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Sprache:eng
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Zusammenfassung:There are many low-energy models of supersymmetry breaking parameters which are motivated by theoretical and experimental considerations. Here, we discuss some of the lesser-known theories of low-energy supersymmetry, and outline their phenomenological consequences. In some cases, these theories have more gauge symmetry or particle content than the Minimal Supersymmetric Standard Model. In other cases, the parameters of the Lagrangian are unusual compared to commonly accepted norms (e.g., Wino LSP, heavy gluino LSP, light gluino, etc.). The phenomenology of supersymmetry varies greatly between the different models. Correspondingly, particular aspects of the detectors assume greater or lesser importance. Detection of supersymmetry and the determination of all parameters may well depend upon having the widest possible view of supersymmetry phenomenology.
ISSN:2331-8422