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Phenomenological Implications of Low Energy Supersymmetry Breaking

Savas Dimopoulos, Michael Dine, Stuart Raby, Scott Thomas, James D. Wells

hep-pharXiv:hep-ph/9607450

Abstract

The experimental signatures for low energy supersymmetry breaking are presented. The lightest standard model superpartner is unstable and decays to its partner plus a Goldstino, G. For a supersymmetry breaking scale below a few 1000 TeV this decay can take place within a detector, leading to very distinctive signatures. If a neutralino is the lightest standard model superpartner it decays by χ10 γ+ G, and if kinematically accessible by χ10 (Z0, h0, H0, A0) + G. These decays can give rise to displaced vertices. Alternately, if a slepton is the lightest standard model superpartner it decays by l l + G. This can be seen as a greater than minimum ionizing charged particle track, possibly with a kink to a minimum ionizing track.

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