English

Mono-Higgs: a new collider probe of dark matter

High Energy Physics - Phenomenology 2014-06-11 v2 High Energy Physics - Experiment

Abstract

We explore the LHC phenomenology of dark matter (DM) pair production in association with a 125 GeV Higgs boson. This signature, dubbed `mono-Higgs,' appears as a single Higgs boson plus missing energy from DM particles escaping the detector. We perform an LHC background study for mono-Higgs signals at s=8\sqrt{s} = 8 and 1414 TeV for four Higgs boson decay channels: γγ\gamma\gamma, bbˉb \bar b, and ZZ4ZZ^* \to 4\ell, jj\ell\ell j j. We estimate the LHC sensitivities to a variety of new physics scenarios within the frameworks of both effective operators and simplified models. For all these scenarios, the γγ\gamma\gamma channel provides the best sensitivity, whereas the bbˉb\bar b channel suffers from a large ttˉt \bar t background. Mono-Higgs is unlike other mono-XX searches (XX=jet, photon, etc.), since the Higgs boson is unlikely to be radiated as initial state radiation, and therefore probes the underlying DM vertex directly.

Keywords

Cite

@article{arxiv.1312.2592,
  title  = {Mono-Higgs: a new collider probe of dark matter},
  author = {Linda M. Carpenter and Anthony DiFranzo and Michael Mulhearn and Chase Shimmin and Sean Tulin and Daniel Whiteson},
  journal= {arXiv preprint arXiv:1312.2592},
  year   = {2014}
}