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arXiv:1202.2751·v1·High Energy Physics — Phenomenology

Vacuum Stability Bound on Extended GMSB Models

Motoi Endo🇯🇵 · Koichi Hamaguchi🇯🇵 · Sho Iwamoto🇯🇵 · Norimi Yokozaki🇯🇵

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Abstract

Extensions of GMSB models were explored to explain the recent reports of the Higgs boson mass around 124-126 GeV. Some models predict a large mu term, which can spoil the vacuum stability of the universe. We study two GMSB extensions: i) the model with a large trilinear coupling of the top squark, and ii) that with extra vector-like matters. In both models, the vacuum stability condition provides upper bounds on the gluino mass if combined with the muon g-2. The whole parameter region is expected to be covered by LHC at sqrt{s} = 14 TeV. The analysis is also applied to the mSUGRA models with the vector-like matters.

Comments: 22 pages, 4 figures

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