English

The top-quark mass in SU(5)xU(1) supergravity

High Energy Physics - Phenomenology 2016-09-01 v1

Abstract

We show that the currently experimentally preferred values of the top-quark mass (\ie, 130\lsimmt\lsim180\GeV130\lsim m_t\lsim180\GeV) are naturally understood in the context of string models, where the top-quark Yukawa coupling at the string scale is generically given by λt=O(g)\lambda_t={\cal O}(g), with gg the unified gauge coupling. A detailed study of the Yukawa sector of SU(5)×U(1)SU(5)\times U(1) supergravity shows that the ratio of the bottom-quark to tau-lepton Yukawa couplings at the string scale is required to be in the range 0.7\lsimλb/λτ\lsim10.7\lsim\lambda_b/\lambda_\tau\lsim1, depending on the values of mtm_t and mbm_b. This result is consistent with SU(5)×U(1)SU(5)\times U(1) symmetry, which does {\em not} require the equality of these Yukawa couplings in the unbroken symmetry phase of the theory. As a means of possibly predicting the value of mtm_t, we propose a procedure whereby the size of the allowed parameter space is determined as a function of mtm_t, since all sparticle and Higgs-boson masses and couplings depend non-trivially on mtm_t. At present, no significant preference for particular values of mtm_t in SU(5)×U(1)SU(5)\times U(1) supergravity is observed, except that high-precision LEP data requires mt\lsim180\GeVm_t\lsim180\GeV.

Keywords

Cite

@article{arxiv.hep-ph/9402226,
  title  = {The top-quark mass in SU(5)xU(1) supergravity},
  author = {J. Lopez and D. Nanopoulos and A. Zichichi},
  journal= {arXiv preprint arXiv:hep-ph/9402226},
  year   = {2016}
}

Comments

latex, 10 pages, 4 figures (included), CERN-TH.7138/94, CTP-TAMU-05/94