English

$\cal{CP}$-sensitive simplified template cross-sections for $t\bar t H$

High Energy Physics - Phenomenology 2025-01-09 v2 High Energy Physics - Experiment

Abstract

The CP\cal{CP} structure of the Higgs boson is a fundamental property which has not yet been constrained with high precision. CP\cal{CP} violation in the Yukawa coupling between the Higgs boson and top quark pair can be probed directly at the Large Hadron Collider by measuring top-quark-associated Higgs production. Multivariate analysis techniques commonly developed so far by the experiments are designed for a specific signal model and, therefore, complicate reinterpretations and statistical combinations. With this motivation in mind, we propose a CP\cal{CP}-sensitive extension of the simplified template cross-section (STXS) framework. Considering multiple Higgs decay channels, we perform an in-depth comparison of CP\cal{CP}-sensitive observables and combinations thereof. Our resulting proposal is to extend the existing binning in the transverse momentum of the Higgs boson pT,Hp_{T,H} by either the pseudorapidity difference of the two top-quarks Δηttˉ\Delta \eta_{t\bar t}, or a variable that is based on the top quark momenta, namely b2b_2 or the Collins-Soper angle cosθ|\cos\theta^*|. We demonstrate that this variable selection provides close to optimal sensitivity to the CP\cal{CP} mixture in the top Yukawa coupling for an integrated luminosity of 300fb1300\mathrm{fb}^{-1}, by comparing it to the results of a multivariate analysis. Our results also suggest a benefit of the two-dimensional STXS extension at 3000fb1\mathrm{fb}^{-1}.

Keywords

Cite

@article{arxiv.2406.03950,
  title  = {$\cal{CP}$-sensitive simplified template cross-sections for $t\bar t H$},
  author = {Henning Bahl and Alberto Carnelli and Frédéric Déliot and Elina Fuchs and Anastasia Kotsokechagia and Tanguy Lucas Marsault and Marco Menen and Laurent Schoeffel and Matthias Saimpert},
  journal= {arXiv preprint arXiv:2406.03950},
  year   = {2025}
}

Comments

46 pages, 21 figures

R2 v1 2026-06-28T16:55:40.410Z