Sweet Spot Supersymmetry
arXiv:0705.3686 · doi:10.1088/1126-6708/2007/08/016
Abstract
We find that there is no supersymmetric flavor/CP problem, mu-problem, cosmological moduli/gravitino problem or dimension four/five proton decay problem in a class of supersymmetric theories with O(1) GeV gravitino mass. The cosmic abundance of the non-thermally produced gravitinos naturally explains the dark matter component of the universe. A mild hierarchy between the mass scale of supersymmetric particles and electroweak scale is predicted, consistent with the null result of a search for the Higgs boson at the LEP-II experiments. A relation to the strong CP problem is addressed. We propose a parametrization of the model for the purpose of collider studies. The scalar tau lepton is the next to lightest supersymmetric particle in a theoretically favored region of the parameter space. The lifetime of the scalar tau is of O(1000) seconds with which it is regarded as a charged stable particle in collider experiments. We discuss characteristic signatures and a strategy for confirmation of this class of theories at the LHC experiments.
53 pages, 14 figures, 2 tables
References in corpus (10)
- Retrofitting O'Raifeartaigh Models with Dynamical Scales
- Gauge Mediation Simplified
- Stau-catalyzed Li Production in Big-Bang Nucleosynthesis
- Gauge Mediation in Metastable Vacua
- Big-Bang Nucleosynthesis with Long-Lived Charged Slepton
- Primordial Lithium Abundance in Catalyzed Big Bang Nucleosynthesis
- Possible solution to the Li problem by the long lived stau
- Simple Scheme for Gauge Mediation
- Gauge mediation in supergravity and gravitino dark matter
- Study of Metastable Staus at Linear Colliders
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