English

$Z_2$ breaking effects in 2-loop RG evolution of 2HDM

High Energy Physics - Phenomenology 2019-03-27 v2

Abstract

We investigate the effects of a Z2Z_2 symmetry in the CP-conserving Two-Higgs-Doublet-Model (2HDM); which is often imposed to prevent Flavor-Changing-Neutral-Currents (FCNCs) at tree-level. Specifically, we analyze how a breaking of the Z2Z_2 symmetry spreads during renormalization group evolution; employing general 2-loop renormalization group equations that we have derived. Evolving the model from the electroweak to the Planck scale, we find that while the case of an exact Z2Z_2 symmetric 2HDM is very constrained, a soft breaking of the Z2Z_2 symmetry extends the valid parameter space regions. The effects of a hard Z2Z_2 breaking in the scalar sector as well as the stability of the flavor alignment ansatz are also investigated. We find that while a hard breaking of the Z2Z_2 symmetry in the potential is problematic, since it speeds up the growth of quartic couplings, the generated FCNCs are heavily suppressed. Conversely, we also find that hard Z2Z_2 breaking in the Yukawa sector at most gives moderate Z2Z_2 breaking in the potential; whereas the FCNCs can become quite sizable far away from the Z2Z_2 symmetric regions.

Cite

@article{arxiv.1810.02588,
  title  = {$Z_2$ breaking effects in 2-loop RG evolution of 2HDM},
  author = {Joel Oredsson and Johan Rathsman},
  journal= {arXiv preprint arXiv:1810.02588},
  year   = {2019}
}

Comments

33 pages, journal version

R2 v1 2026-06-23T04:29:25.943Z