Physics – High Energy Physics – High Energy Physics - Phenomenology
Scientific paper
2005-08-12
ECONF C050318:0219,2005
Physics
High Energy Physics
High Energy Physics - Phenomenology
6pp, to appear in the proceedings of the 2005 International Linear Collider Workshop (LCWS 05), Stanford, California, 18-22 Ma
Scientific paper
A compelling framework to explain dark matter and electroweak baryogenesis is supersymmetry with light scalar top quarks (stops) and a small mass difference between the stop and the lightest neutralino. In this work, the stop detection capability at the ILC for small mass differences between the stop and the neutralino is studied. The analysis is based on a fast and realistic detector simulation. Significant sensitivity for mass differences down to 5 GeV is obtained. It is discussed how the relevant parameters of the scalar tops can be extracted and used to compute the dark matter density in the universe.
Carena Marcela
Finch Adrian A.
Freitas Ayres
Milstene Caroline
Nowak Hannelies
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