One loop QCD corrections to $gg \to t\overline{t}H$ at $\mathcal{O}(\epsilon^2)$
Abstract
We compute the one-loop corrections to \tth up to order in the dimensional regularization parameter. We apply the projector method to compute polarized amplitudes, which generalize massless helicity amplitudes to the massive case. We employ a semi-numerical strategy to evaluate the scattering amplitudes. We express the form factors through scalar integrals analytically, and obtain separately integration by parts reduction identities in compact form. We integrate numerically the corresponding master integrals with an enhanced implementation of the Auxiliary Mass Flow algorithm. Using a numerical fit method, we concatenate the analytic and the numeric results, to obtain fast and reliable evaluation of the scattering amplitude. This approach improves numerical stability and evaluation time. Our results are implemented in the \texttt{Mathematica} package \texttt{TTH}.
Keywords
Cite
@article{arxiv.2312.10015,
title = {One loop QCD corrections to $gg \to t\overline{t}H$ at $\mathcal{O}(\epsilon^2)$},
author = {Federico Buccioni and Philipp Alexander Kreer and Xiao Liu and Lorenzo Tancredi},
journal= {arXiv preprint arXiv:2312.10015},
year = {2023}
}
Comments
29 pages, 1 figure, 1 table. Repository with numerical code at https://github.com/p-a-kreer/TTH