Mixed Bino-Wino-Higgsino Dark Matter in Gauge Messenger Models
arXiv:hep-ph/0702041 · doi:10.1088/1475-7516/2007/08/014
Abstract
Almost degenerate bino and wino masses at the weak scale is one of unique features of gauge messenger models. The lightest neutralino is a mixture of bino, wino and higgsino and can produce the correct amount of the dark matter density if it is the lightest supersymmetric particle. Furthermore, as a result of squeezed spectrum of superpartners which is typical for gauge messenger models, various co-annihilation and resonance regions overlap and very often the correct amount of the neutralino relic density is generated as an interplay of several processes. This feature makes the explanation of the observed amount of the dark matter density much less sensitive to fundamental parameters. We calculate the neutralino relic density assuming thermal history and present both spin independent and spin dependent cross sections for the direct detection. We also discuss phenomenological constraints from b to s gamma and muon g-2 and compare results of gauge messenger models to well known results of the mSUGRA scenario.
27 pages, 9 figures, references added, version to appear at JCAP
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- micrOMEGAs2.0: a program to calculate the relic density of dark matter in a generic model
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Cited by in corpus (7)
- Compressed supersymmetry and natural neutralino dark matter from top squark-mediated annihilation to top quarks
- Diphoton decays of stoponium at the Large Hadron Collider
- Deflected Mirage Mediation: A Framework for Generalized Supersymmetry Breaking
- Exploring compressed supersymmetry with same-sign top quarks at the Large Hadron Collider
- The top squark-mediated annihilation scenario and direct detection of dark matter in compressed supersymmetry
- Light neutralino dark matter with a very light Higgs for CoGeNT and DAMA/LIBRA data
- Peccei-Quinn NMSSM in the light of 125 GeV Higgs