Physics – High Energy Physics – High Energy Physics - Phenomenology
Scientific paper
1998-12-08
Nucl.Phys. B556 (1999) 23-48
Physics
High Energy Physics
High Energy Physics - Phenomenology
LaTeX file, 30 pages including 12 figures;v2 typos fixed and references added
Scientific paper
10.1016/S0550-3213(99)00324-7
The phenomenological implications of the eleven dimensional limit of $M$-theory (strongly coupled $E_8\times E_8$) are investigated. In particular we calculate the supersymmetric particle spectrum subject to constraints of correct electroweak symmetry breaking and the requirement that the lightest supersymmetric particle provides the dark matter of the universe. We also calculate direct detection event rates of the lightest neutralino relevant for non-baryonic dark matter experiments. The modulation effect, due to Earth's annual motion is also calculated.
Bailin David
Kraniotis G. V.
Love Alex
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