English

$\Delta F=1$ constraints on composite Higgs models with LR parity

High Energy Physics - Phenomenology 2012-12-06 v3

Abstract

We analyze the bounds on the spectrum of composite Higgs models (CHM) that come from flavor observables, by means of simple two-site effective Lagrangians, which incorporate a custodial symmetry and a Left-Right parity and which could also be adopted in further phenomenological studies on CHM. We derive, in particular, an important constraint on the masses of the (tL,bL)(t_L, b_L) partners, which does not depend on the flavor structure of the sector beyond the SM. This bound is obtained from the "infrared" contribution to bsγb \to s\gamma induced by the flavor-conserving effective vertex WtRbRWt_Rb_R. We find that the presence of a custodial symmetry can play a role in protecting this effective coupling and, as a consequence, in attenuating the constraint, which, however, remains of the order of 1 TeV. In addition to this bound, we calculate the constraints from the "ultraviolet" contribution to bsγb \to s \gamma, induced by loops of heavy fermions, and to ϵ/ϵK\epsilon^{'}/\epsilon_K.

Keywords

Cite

@article{arxiv.1204.0478,
  title  = {$\Delta F=1$ constraints on composite Higgs models with LR parity},
  author = {Natascia Vignaroli},
  journal= {arXiv preprint arXiv:1204.0478},
  year   = {2012}
}

Comments

35 pp. Version to appear in PRD