We show how the Higgs boson mass is protected from the potentially large corrections due to the introduction of minimal dark matter if the new physics sector is made supersymmetric. The fermionic dark matter candidate (a 5-plet of SU(2)L) is accompanied by a scalar state. The weak gauge sector is made supersymmetric, and the Higgs boson is embedded in a supersymmetric multiplet. The remaining standard model states are nonsupersymmetric. Nonvanishing corrections to the Higgs boson mass only appear at three-loop level, and the model is natural for dark matter masses up to 15 TeV - a value larger than the one required by the cosmological relic density. The construction presented stands as an example of a general approach to naturalness that solves the little hierarchy problem which arises when new physics is added beyond the standard model at an energy scale around 10 TeV.

Natural supersymmetric minimal dark matter / Fabbrichesi, M.; Urbano, A.. - In: PHYSICAL REVIEW D. - ISSN 2470-0010. - 93:5(2016). [10.1103/PhysRevD.93.055017]

Natural supersymmetric minimal dark matter

Urbano A.
2016

Abstract

We show how the Higgs boson mass is protected from the potentially large corrections due to the introduction of minimal dark matter if the new physics sector is made supersymmetric. The fermionic dark matter candidate (a 5-plet of SU(2)L) is accompanied by a scalar state. The weak gauge sector is made supersymmetric, and the Higgs boson is embedded in a supersymmetric multiplet. The remaining standard model states are nonsupersymmetric. Nonvanishing corrections to the Higgs boson mass only appear at three-loop level, and the model is natural for dark matter masses up to 15 TeV - a value larger than the one required by the cosmological relic density. The construction presented stands as an example of a general approach to naturalness that solves the little hierarchy problem which arises when new physics is added beyond the standard model at an energy scale around 10 TeV.
2016
Dark matter; supersymmetry; naturalness
01 Pubblicazione su rivista::01a Articolo in rivista
Natural supersymmetric minimal dark matter / Fabbrichesi, M.; Urbano, A.. - In: PHYSICAL REVIEW D. - ISSN 2470-0010. - 93:5(2016). [10.1103/PhysRevD.93.055017]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1645337
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