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Non-Degenerate Squarks from Flavored Gauge Mediation

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arxiv 1306.6631 v2 pith:HHVSKXBJ submitted 2013-06-27 hep-ph hep-ex

classification hep-phhep-ex
keywords squarkmasseslargemasssquarksboundscontributionscouplings
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We study the squark spectra of Flavored Gauge Mediation Models, in which messenger-matter superpotential couplings generate new, generation-dependent contributions to the squark masses. The new couplings are controlled by the same flavor symmetry that explains the fermion masses, leading to excellent alignment of the quark and squark mass matrices. This allows for large squark mass splittings consistent with all flavor bounds. In particular, second-generation squarks are often significantly lighter than the first-generation squarks. As squark production at the LHC is dominated by the up- and down-squarks and the efficiencies for squark searches increase with their masses, the charm and/or strange squark masses can be well below the current LHC bounds. At the same time, even with a single set of messengers, the models can generate large stop mixings which result in large loop contributions to the Higgs mass.

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  1. Revisiting the LHC Constraints on Gauge-Mediated Supersymmetry Breaking Scenarios

    hep-ph 2024-11 conditional novelty 6.0 of 10

    In a realistic general gauge mediation model, including gravitino decays of all sparticles weakens ATLAS mono-photon exclusion limits on the gluino-NLSP mass plane, especially for negative mu and compressed spectra.

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