We present theoretical predictions for selected differential cross sections for the process pp→ttˉB at the LHC, where B can be a Higgs (H), a Z or a W boson. The predictions are calculated in the direct QCD framework up to the next-to-next-leading logarithmic (NNLL) accuracy and matched to the complete NLO results including QCD and electroweak effects. Additionally, results for the total cross sections are provided. The calculations deliver a significant improvement of the theoretical predictions, especially for the ttˉH and the ttˉZ production. In these cases, predictions for both the total and differential cross sections are remarkably stable with respect to the central scale choice and carry a substantially reduced scale uncertainty in comparison with the complete NLO predictions.
@article{arxiv.2001.03031,
title = {Associated top quark pair production with a heavy boson: differential cross sections at NLO+NNLL accuracy},
author = {Anna Kulesza and Leszek Motyka and Daniel Schwartländer and Tomasz Stebel and Vincent Theeuwes},
journal= {arXiv preprint arXiv:2001.03031},
year = {2020}
}