English

Lepton-flavor universality limits in warped space

High Energy Physics - Phenomenology 2017-11-01 v2

Abstract

We explore the limits on lepton-flavor universality (LFU) violation in theories where the hierarchy problem is solved by means of a warped extra dimension. In those theories LFU violation, in fermion interaction with Kaluza-Klein modes of gauge bosons, is provided ab initio when different flavor of fermions are differently localized along the extra dimension. As this fact arises from the mass pattern of quarks and leptons, LFU violation is natural in this class of theories. We analyze the experimental data pointing towards LFU violation, as well as the most relevant electroweak and flavor observables, and the LFU tests in the μ/e\mu/e and τ/μ\tau/\mu sectors. We find agreement with RK()R_{K^{(\ast)}} and RD()R_{D^{(\ast)}} data at 95% CL, provided the third generation left-handed fermions are composite (0.14<cbL<0.280.14 < c_{b_L} < 0.28 and 0.27<cτL<0.330.27 < c_{\tau_L} < 0.33), and find the absolute limits RK()0.79R_{K^{(\ast)}}\gtrsim 0.79 and RD()/RD()SM1.13R_{D^{(\ast)}}/R_{D^{(\ast)}}^{\rm SM}\lesssim 1.13. Moreover we predict B(BKννˉ)1.14×105\mathcal B( B\to K\nu\bar\nu)\gtrsim 1.14\times 10^{-5} at 95% CL, smaller than the present experimental upper bound but a few times larger than the Standard Model prediction.

Keywords

Cite

@article{arxiv.1707.08014,
  title  = {Lepton-flavor universality limits in warped space},
  author = {Eugenio Megias and Mariano Quiros and Lindber Salas},
  journal= {arXiv preprint arXiv:1707.08014},
  year   = {2017}
}

Comments

6 pages, 4 figures; v2 added references, improved discussion

R2 v1 2026-06-22T20:56:55.914Z