English

CP-violating top-Higgs coupling in SMEFT

High Energy Physics - Phenomenology 2023-11-17 v2

Abstract

The total cross section of the process μμ+νμνˉμttˉH\mu^- \mu^+ \to \nu_\mu \bar{\nu}_\mu t \bar{t} H has strong dependence on the CP phase ξ\xi of the top Yukawa coupling, where the ratio of ξ=π\xi=\pi and ξ=0\xi = 0 (SM) grows to 670 at s\sqrt{s} = 30 TeV, 3400 at 100 TeV. We study the cause of the strong energy dependence and identify its origin as the (E/mW)2(E/m_W^{})^2 growth of the weak boson fusion sub-amplitudes, WLWL+ttˉHW_L^- W_L^+ \to t \bar{t} H, with the two WWs are longitudinally polarized. We repeat the study in the SMEFT framework where EW gauge invariance is manifest and find that the highest energy cross section is reduced to a quarter of the complex top Yukawa model result, with the same energy power. By applying the Goldstone boson (GB) equivalence theorem, we identify the origin of this strong energy growth of the SMEFT amplitudes as associated with the dimension-6 ππ+ttH\pi^- \pi^+ ttH vertex, where π±\pi^\pm denotes the GB of W±W^\pm. We obtain the unitarity bound on the coefficient of the SMEFT operator by studying all 222\to2 and 232\to3 cross sections in the J=0J=0 channel.

Cite

@article{arxiv.2310.10852,
  title  = {CP-violating top-Higgs coupling in SMEFT},
  author = {Vernon Barger and Kaoru Hagiwara and Ya-Juan Zheng},
  journal= {arXiv preprint arXiv:2310.10852},
  year   = {2023}
}

Comments

14 pages, 6 figures and 1 table; references added

R2 v1 2026-06-28T12:52:42.703Z