English

A New Precision Process at FCC-hh: the diphoton leptonic Wh channel

High Energy Physics - Phenomenology 2020-10-15 v2 High Energy Physics - Experiment

Abstract

The increase in luminosity and center of mass energy at the FCC-hh will open up new clean channels where BSM contributions are enhanced at high energy. In this paper we study one such channel, WhνγγWh \to \ell\nu\gamma\gamma. We estimate the sensitivity to the Oφq(3)\mathcal{O}_{\varphi q}^{(3)}, OφW\mathcal{O}_{\varphi {W}}, and OφW~\mathcal{O}_{\varphi \widetilde {W}} SMEFT operators. We find that this channel will be competitive with fully leptonic WZWZ production in setting bounds on Oφq(3)\mathcal{O}_{\varphi q}^{(3)}. We also find that the double differential distribution in the pThp_T^h and the leptonic azimuthal angle can be exploited to enhance the sensitivity to OφW~\mathcal{O}_{\varphi \widetilde {W}}. However, the bounds on OφW\mathcal{O}_{\varphi {W}} and OφW~\mathcal{O}_{\varphi \widetilde {W}} we obtain in our analysis, though complementary and more direct, are not competitive with those coming from other measurements such as EDMs and inclusive Higgs measurements.

Keywords

Cite

@article{arxiv.2004.06122,
  title  = {A New Precision Process at FCC-hh: the diphoton leptonic Wh channel},
  author = {Fady Bishara and Philipp Englert and Christophe Grojean and Marc Montull and Giuliano Panico and Alejo N. Rossia},
  journal= {arXiv preprint arXiv:2004.06122},
  year   = {2020}
}

Comments

19 + 9 pages, 7 figures, and 9 tables. v2: typos corrected, QED k-factors incorporated, results slightly changed, conclusions unchanged. Matches published version