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arXiv:1307.5068·v2·High Energy Physics — Phenomenology

Global Constraints on Lepton-Quark Contact Interactions

J. de Blas🇺🇸 · M. Chala🇪🇸 · Jose Santiago🇪🇸

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Abstract

The Large Hadron Collider can do precision physics at a level that is competitive with electroweak precision constraints when probing physics beyond the Standard Model. We present a simple yet general parameterization of the effect of an arbitrary number of lepton-quark contact interactions on any di-lepton observable at hadron colliders. This parameterization can be easily adopted by the experimental collaborations to put bounds on arbitrary combinations of lepton-quark contact interactions. We compute the corresponding bounds from current di-lepton resonance searches at the LHC and find that they are competitive with and often complementary to indirect constraints from electroweak precision data. We combine all current constraints in a global analysis to obtain the most stringent bounds on lepton-quark contact interactions. We also show that the high-energy phase of the LHC has a unique potential in terms of discovery and discrimination power among different types of lepton-quark contact interactions.

Comments: Latex 8 pages, 1 figure. References added, minor changes. Version published in Phys. Rev. D

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