paper

Lepton Flavours at the Early LHC Experiments as the Footprints of the Dark Matter Producing Mechanisms

arXiv:0807.0278 · doi:10.1103/PhysRevD.78.075030

Abstract

The mSUGRA parameter space corresponding to light sleptons well within the reach of LHC and relatively light squarks and gluinos (mass 1 TeV) has three regions consistent with the WMAP data on dark matter relic density and direct mass bounds from LEP 2. Each region can lead to distinct leptonic signatures from squark-gluino events during the early LHC experiments (integrated luminosity or even smaller). In the much studied stau-LSP coannihilation region with a vanishing common trilinear coupling () at the GUT scale a large fraction of the final states contain electrons and / or muons and - - universality holds to a good approximation. In the not so well studied scenarios with non-vanishing both LSP pair annihilation and stau-LSP coannihilation could contribute significantly to the dark matter relic density for even smaller squark-gluino masses. Our simulations indicate that the corresponding signatures are final states rich in -leptons while final states with electrons and muons are suppressed leading to a violation of lepton universality. These features may be observed to a lesser extent even in the modified parameter space (with non-zero ) where the coannihilation process dominates. We also show that the generic -leptons + -jets+ signatures without flavour tagging can also discriminate among the three scenarios. However, the signals become more informative if the and -jet tagging facilities at the LHC experiments are utilized.

28 pages

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