English

Charged Lepton Mass Relations in a SUSY Scenario

High Energy Physics - Phenomenology 2018-11-07 v2

Abstract

The observed charged lepton masses satisfy the relations K(me+mμ+mτ)/(me+mμ+mτ)2=2/3K \equiv (m_e +m_\mu+m_\tau)/(\sqrt{m_e} +\sqrt{m_\mu} +\sqrt{m_\tau})^2 =2/3 and κmemμmτ/(me+mμ+mτ)3=1/486\kappa \equiv \sqrt{m_e m_\mu m_\tau}/(\sqrt{m_e} +\sqrt{m_\mu} +\sqrt{m_\tau})^3 =1/486 with great accuracy. These parameters are given as K=(Tr[ΦΦ])/(Tr[Φ])2K=( {\rm Tr}[\Phi \Phi])/ ({\rm Tr}[\Phi ])^2 and κ=detΦ/(Tr[Φ])3\kappa = {\rm det} \Phi/({\rm Tr}[\Phi ])^3 if the charged lepton masses meim_{ei} are given by meikΦi kΦk im_{ei} \propto \sum_k \Phi_i^{\ k} \Phi_k^{\ i} where Φ\Phi is a U(3)-family nonet scalar. Simple scalar potential forms to realize the relations have been already proposed in non-supersymmetric scenarios, but the potential forms are not stable against the renormalization group effects. In this paper, we examine supersymmetric scenarios and find that the parameters KK and κ\kappa are made stable against the effects in a very nontrivial way, even though the superpotential itself (in the canonical basis) suffers the usual corrections. We also show possible simple superpotential forms for the relations.

Keywords

Cite

@article{arxiv.1805.09533,
  title  = {Charged Lepton Mass Relations in a SUSY Scenario},
  author = {Yoshio Koide and Toshifumi Yamashita},
  journal= {arXiv preprint arXiv:1805.09533},
  year   = {2018}
}

Comments

8 pages, no figures: Versio accepted PLB

R2 v1 2026-06-23T02:06:49.908Z