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Folded Supersymmetry with a Twist

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arxiv 1508.05396 v2 pith:2OJDZCNO submitted 2015-08-21 hep-ph

classification hep-ph
keywords foldedsupersymmetryboundaryconditionsf-susymodelsnon-trivialstandard
verification ladder T0 review T1 audit T2 compute T3 formal
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Folded supersymmetry (f-SUSY) stabilizes the weak scale against radiative corrections from the top sector via scalar partners whose gauge quantum numbers differ from their Standard Model counterparts. This non-trivial pairing of states can be realized in extra-dimensional theories with appropriate supersymmetry-breaking boundary conditions. We present a class of calculable f-SUSY models that are parametrized by a non-trivial twist in 5D boundary conditions and can accommodate the observed Higgs mass and couplings. Although the distinctive phenomenology associated with the novel folded states should provide strong evidence for this mechanism, the most stringent constraints are currently placed by conventional supersymmetry searches. These models remain minimally fine-tuned in light of LHC8 data and provide a range of both standard and exotic signatures accessible at LHC13.

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    A parametrized simulation of the IDEA detector at FCC-ee shows that a search for displaced vertices in Zh events can probe Higgs decays to long-lived dark scalars down to a branching ratio of about 10^-4.

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