Constraints on models with universal extra dimensions from dilepton searches at the LHC
Lisa Edelhäuser, Thomas Flacke, Michael Krämer
Abstract
Lisa Edelhäuser, Thomas Flacke, Michael Krämer
Abstract
Models with universal extra dimensions predict that each Standard Model particle is accompanied by a tower of Kaluza-Klein resonances. Canonical searches for the production and cascade decays of first Kaluza-Klein modes through missing transverse momentum signatures suffer in general from low detection efficiencies because of the rather compressed Kaluza-Klein particle mass spectrum. Here, we instead analyze signatures from the production of second Kaluza-Klein states which can decay into Standard Model particles and thus do not result in any missing transverse momentum. Such signatures provide a strong sensitivity, and are of particular interest as they would allow for a clear distinction between extra dimensional models and other new physics such as minimal supersymmetric models. We constrain the production of second Kaluza-Klein particles from recent LHC searches for dilepton resonances, and place limits on the compactification scale R −1 ≳ 715 GeV and on the masses of the second Kaluza-Klein particles M KK(2) ≳ 1.4 TeV in the minimal UED model.
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Models with universal extra dimensions predict that each Standard Model particle is accompanied by a tower of Kaluza-Klein resonances. Canonical searches for the production and cascade decays of first Kaluza-Klein modes through missing transverse momentum signatures suffer in general from low detection efficiencies because of the rather compressed Kaluza-Klein particle mass spectrum. Here, we instead analyze signatures from the production of second Kaluza-Klein states which can decay into Standard Model particles and thus do not result in any missing transverse momentum. Such signatures provide a strong sensitivity, and are of particular interest as they would allow for a clear distinction between extra dimensional models and other new physics such as minimal supersymmetric models. We constrain the production of second Kaluza-Klein particles from recent LHC searches for dilepton resonances, and place limits on the compactification scale R −1 ≳ 715 GeV and on the masses of the second Kaluza-Klein particles M KK(2) ≳ 1.4 TeV in the minimal UED model.
Key concepts: Kaluza–Klein theory, Physics, Universal extra dimension, Particle physics, Large Hadron Collider, Physics beyond the Standard Model, Compactification (mathematics), Standard Model (mathematical formulation)