Constraints on Mediator Coupled to Heavy Quarks from LHC Data
Abstract
We apply LHC data to constrain a simplified extension of the Standard Model containing a new spin-1 mediator , which does not couple to first generation quarks, and a spinor dark matter particle . We recast ATLAS and CMS searches for final states containing one or more jet(s) + missing , with or without tags, as well as searches for di-jet resonances with or tagging. We find that LHC constraints on the axial vector couplings of the mediator are always stronger than the unitarity bound, which scales like . If has a sizable invisible branching ratio, the strongest LHC bound on both vector couplings and axial vector coupling comes from a di-jet + missing search with or without double tag. These bounds are quite strong for TeV, even though we have switched off all couplings to valence quarks. Searches for a di-jet resonance with double tag lead to comparable bounds with the previous results even if decays are allowed; these are the only sensitive LHC searches if the invisible branching ratio of is very small or zero.
Cite
@article{arxiv.1903.00496,
title = {Constraints on Mediator Coupled to Heavy Quarks from LHC Data},
author = {Manuel Drees and Zhongyi Zhang},
journal= {arXiv preprint arXiv:1903.00496},
year = {2019}
}
Comments
13 pages, 2 figures