Would a Light Higgs Detection Imply New Physics?
Abstract
Depending on the Higgs-boson and top-quark masses, and , the effective potential of the Standard Model can develop a non-standard minimum for values of the field much larger than the weak scale. In those cases the standard minimum becomes metastable and the possibility of decay to the non-standard one arises. Comparison of the decay rate to the non-standard minimum at finite (and zero) temperature with the corresponding expansion rate of the Universe allows to identify the region, in the (, ) plane, where the Higgs field is sitting at the standard electroweak minimum. Since that region depends on the cutoff scale , up to which we believe the Standard Model, the discovery of the Higgs boson, mainly at LEP-200, might put an upper bound (below the Planck scale) on the scale of new physics .
Cite
@article{arxiv.hep-ph/9507317,
title = {Would a Light Higgs Detection Imply New Physics?},
author = {M. Quiros},
journal= {arXiv preprint arXiv:hep-ph/9507317},
year = {2007}
}
Comments
6 pages, latex + psfig.sty, 3 postscript tarred uucompressed figures. Based on talk given at the XXXth Rencontres de Moriond, Electroweak Interactions and Unified Theories, March 11-18, 1995