Leptonic signatures of color-sextet scalars
arXiv:2209.04456 · doi:10.1103/PhysRevD.106.115006
Abstract
Color-sextet scalars could have an array of possible couplings to the Standard Model beyond their well known renormalizable couplings to quark pairs. The next-largest couplings these scalars might enjoy have mass dimension six, and some include electroweak fields and can therefore produce highly distinctive signals at hadron colliders. Here we study the single production of color-sextet scalars in association with a hard lepton, which results from a dimension-six coupling to leptons in addition to quarks and gluons. We identify parameter space in which these scalars decay promptly and propose a search for such particles in final states with two jets and an opposite-charge lepton pair, one member of which has high momentum. We then impose our selection criteria on the proposed signal and its leading backgrounds to project the discovery potential and exclusion limits during the next runs of the LHC. We compare our search with existing searches for leptoquarks, and we find we achieve much higher sensitivity with our tailored approach due to the unique kinematics of leptonic sextet events.
17 pages, 14 figures. Updated to resemble Phys. Rev. D Version of Record
References in corpus (10)
- The automated computation of tree-level and next-to-leading order differential cross sections, and their matching to parton shower simulations
- An Introduction to PYTHIA 8.2
- FeynRules - Feynman rules made easy
- MadAnalysis 5, a user-friendly framework for collider phenomenology
- FEWZ 2.0: A code for hadronic Z production at next-to-next-to-leading order
- Designing and recasting LHC analyses with MadAnalysis 5
- Flavor Changing Neutral Currents, an Extended Scalar Sector, and the Higgs Production Rate at the LHC
- Colored Resonant Signals at the LHC: Largest Rate and Simplest Topology
- Color Sextet Scalars at the CERN Large Hadron Collider
- Unitarity bounds on scalar dark matter effective interactions at LHC