A Higgs Impostor in Low-Scale Technicolor
Abstract
We propose a "Higgs impostor" model for the 125 GeV boson, , recently discovered at the LHC. It is a technipion, , with expected in this mass region in low-scale technicolor. Its coupling to pairs of standard-model gauge bosons are dimension-five operators whose strengths are determined within the model. It is easy for the gluon fusion rate to agree with the measured one, but are greatly suppressed relative to the standard-model Higgs rates. This is a crucial test of our proposal. In this regard, we assess the most recent data on decay modes, with a critical discussion of . In our model the mixes almost completely with the isovector , giving two similar states, at 125 Gev and higher, possibly in the range 170--190 Gev. Important consequences of this mixing are (1) the only associated production of et al is via , and this could be sizable; (2) may soon be accessible in ; and (3) LSTC phenomenology at the LHC is substantially modified.
Keywords
Cite
@article{arxiv.1210.5462,
title = {A Higgs Impostor in Low-Scale Technicolor},
author = {Estia Eichten and Kenneth Lane and Adam Martin},
journal= {arXiv preprint arXiv:1210.5462},
year = {2013}
}
Comments
25 pages, 9 figures, references added. Our discussion of the 125 GeV boson discovered at CERN is updated to include the latest ATLAS and CMS data. We critically examine the crucial ZZ* -> 4l data and argue that it does not justify identifying this boson as a Higgs. In addition, several minor corrections have been made