English

NLO QCD predictions for $Z+\gamma$ + jets production with Sherpa

High Energy Physics - Phenomenology 2018-04-04 v1

Abstract

We present precise predictions for prompt photon production in association with a ZZ boson and jets. They are obtained within the Sherpa framework as a consistently merged inclusive sample. Leptonic decays of the ZZ boson are fully included in the calculation with all offshell effects. Virtual matrix elements are provided by OpenLoops and parton shower effects are simulated with a dipole parton shower. Thanks to the NLO QCD corrections included not only for inclusive ZγZ\gamma production but also for the ZγZ\gamma + 1-jet process we find significantly reduced systematic uncertainties and very good agreement with experimental measurements at s=8\sqrt{s}=8 TeV. Predictions at s=13\sqrt{s}=13 TeV are displayed including a study of theoretical uncertainties. In view of an application of these simulations within LHC experiments, we discuss in detail the necessary combination with a simulation of the ZZ + jets final state. In addition to a corresponding prescription we introduce recommended cross checks to avoid common pitfalls during the overlap removal between the two samples.

Keywords

Cite

@article{arxiv.1708.06283,
  title  = {NLO QCD predictions for $Z+\gamma$ + jets production with Sherpa},
  author = {Johannes Krause and Frank Siegert},
  journal= {arXiv preprint arXiv:1708.06283},
  year   = {2018}
}

Comments

20 pages, 15 Figures