2013RWTH Publications (RWTH Aachen)Open access

Constraints on models with universal extra dimensions from dilepton searches at the LHC

Lisa Edelhäuser, Thomas Flacke, Michael Krämer

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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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What this paper is about

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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Available 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.

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)

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