English

2HDM Higgs-to-Higgs Decays at Next-to-Leading Order

High Energy Physics - Phenomenology 2017-04-19 v1

Abstract

The detailed investigation of the Higgs sector at present and future colliders necessitates from the theory side as precise predictions as possible, including higher order corrections. An important ingredient for the computation of higher order corrections is the renormalization of the model parameters and fields. In this paper we complete the renormalization of the 2-Higgs-Doublet Model (2HDM) Higgs sector launched in a previous contribution with the investigation of the renormalization of the mixing angles α\alpha and β\beta. Here, we treat the renormalization of the mass parameter m122m_{12}^2 that softly breaks the Z2\mathbb{Z}_2 symmetry of the 2HDM Higgs sector. We investigate the impact of two different renormalization schemes on the sample Higgs-to-Higgs decay HhhH\to hh. This decay also allows us to analyze the renormalization of the mixing angles and to confirm the properties extracted before in other Higgs decays. In conclusion we find that a gauge-independent, process-independent and numerically stable renormalization of the 2HDM Higgs sector is given by the application of the tadpole-pinched scheme for the mixing angles α\alpha and β\beta and by the use of the MS\overline{MS} scheme for m122m_{12}^2.

Keywords

Cite

@article{arxiv.1609.04185,
  title  = {2HDM Higgs-to-Higgs Decays at Next-to-Leading Order},
  author = {Marcel Krause and Margarete Muhlleitner and Rui Santos and Hanna Ziesche},
  journal= {arXiv preprint arXiv:1609.04185},
  year   = {2017}
}