English

Explaining the ttbar Forward-Backward Asymmetry from a GUT-Inspired Model

High Energy Physics - Phenomenology 2012-01-26 v2

Abstract

We consider a model that includes light colored scalars from the {\bf 45} and {\bf 50} representations of SU(5) in order to explain the CDF- and D\O\O-reported ttˉt\bar{t} forward-backward asymmetry, AFBttˉA^{t\bar{t}}_{FB}. These light scalars are, labeled by their charges under the Standard Model gauge groups, the (6,1)4/3(6,1)_{4/3} and (6ˉ,3)1/3(\bar{6},3)_{1/3} from the {\bf 50} and the (8,2)1/2(8,2)_{1/2} from the {\bf 45}. When the Yukawa coupling of the {\bf 50} is reasonably chosen and that of the {\bf 45} kept negligible at the scale of MZM_Z, the model yields phenomenologically viable results in agreement with the total AFBttˉA^{t\bar{t}}_{FB} reported by CDF at the 0.7σ\sigma level and with AFBttˉ(Mttˉ450GeV)A^{t\bar{t}}_{FB} (M_{t\bar{t}} \ge 450 \text{GeV}) at the 2.2σ\sigma level. Additionally, the Yukawa coupling of the {\bf 50} remains perturbative to the GUT scale (which defines a "reasonably chosen" value at MZM_Z), and the presence of the light scalar from the {\bf 45} allows for gauge coupling unification at a scale of MGUT1017M_{GUT} \sim 10^{17} GeV.

Keywords

Cite

@article{arxiv.1111.2050,
  title  = {Explaining the ttbar Forward-Backward Asymmetry from a GUT-Inspired Model},
  author = {David C. Stone and Patipan Uttayarat},
  journal= {arXiv preprint arXiv:1111.2050},
  year   = {2012}
}

Comments

18 pages, 3 figures, 2 tables, 1 appendix, typos corrected, reference added, published on JHEP

R2 v1 2026-06-21T19:33:03.088Z