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Golden Probe of Electroweak Symmetry Breaking

High Energy Physics - Phenomenology 2016-12-14 v1 High Energy Physics - Experiment

Abstract

The ratio of the Higgs couplings to WWWW and ZZZZ pairs, λWZ\lambda_{WZ}, is a fundamental parameter in electroweak symmetry breaking as well as a measure of the (approximate) custodial symmetry possessed by the gauge boson mass matrix. We show that Higgs decays to four leptons are sensitive, via tree level/1-loop interference effects, to both the magnitude and, in particular, overall sign of λWZ\lambda_{WZ}. Determining this sign requires interference effects, as it is nearly impossible to measure with rate information. Furthermore, simply determining the sign effectively establishes the custodial representation of the Higgs boson. We find that h4h\to4\ell (42e2μ,4e,4μ4\ell \equiv 2e2\mu, 4e, 4\mu) decays have excellent prospects of directly establishing the overall sign at a high luminosity 13 TeV LHC. We also examine the ultimate LHC sensitivity in h4h\to4\ell to the magnitude of λWZ\lambda_{WZ}. Our results are independent of other measurements of the Higgs boson couplings and, in particular, largely free of assumptions about the top quark Yukawa couplings which also enter at 1-loop. This makes h4h\to4\ell a unique and independent probe of the electroweak symmetry breaking mechanism and custodial symmetry.

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Cite

@article{arxiv.1608.02159,
  title  = {Golden Probe of Electroweak Symmetry Breaking},
  author = {Yi Chen and Joe Lykken and Maria Spiropulu and Daniel Stolarski and Roberto Vega-Morales},
  journal= {arXiv preprint arXiv:1608.02159},
  year   = {2016}
}

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8 pages