New Precision Electroweak Tests of SU(5) x U(1) Supergravity
Abstract
We explore the one-loop electroweak radiative corrections in supergravity via explicit calculation of vacuum-polarization and vertex-correction contributions to the and parameters. Experimentally, these parameters are obtained from a global fit to the set of observables , and . We include -dependent effects, which induce a large systematic negative shift on for light chargino masses (). The (non-oblique) supersymmetric vertex corrections to , which define the parameter, show a significant positive shift for light chargino masses, which for can be nearly compensated by a negative shift from the charged Higgs contribution. We conclude that at the 90\%CL, for the present experimental values of and do not constrain in any way supergravity in both no-scale and dilaton scenarios. On the other hand, for the constraints on the parameter space become increasingly stricter. We demonstrate this trend with a study of the case, where only a small region of parameter space, with , remains allowed and corresponds to light chargino masses (). Thus supergravity combined with high-precision LEP data would suggest the presence of light charginos if the top quark is not detected at the Tevatron.
Cite
@article{arxiv.hep-ph/9311277,
title = {New Precision Electroweak Tests of SU(5) x U(1) Supergravity},
author = {J. L. Lopez and D. V. Nanopoulos and G. T. Park and A. Zichichi},
journal= {arXiv preprint arXiv:hep-ph/9311277},
year = {2009}
}
Comments
LaTeX, 11 Pages+4 Figures(not included), the figures available upon request as an uuencoded file(0.4MB) or 4 PS files from [email protected], CERN-TH.7078/93, CTP-TAMU-68/93, ACT-24/93