English

Model-Independent Global Constraints on New Physics

High Energy Physics - Phenomenology 2009-10-22 v1

Abstract

Using effective-lagrangian techniques we perform a systematic survey of the lowest-dimension effective interactions through which heavy physics might manifest itself in present experiments. We do not restrict ourselves to special classes of effective interactions (such as `oblique' corrections). We compute the effects of these operators on all currently well-measured electroweak observables, both at low energies and at the ZZ resonance, and perform a global fit to their coefficients. Despite the fact that a great many operators arise in our survey, we find that most are quite strongly bounded by the current data. We use our survey to systematically identify those effective interactions which are {\it not} well-bounded by the data -- these could very well include large new-physics contributions. Our results may also be used to efficiently confront specific models for new physics with the data, as we illustrate with an example.

Keywords

Cite

@article{arxiv.hep-ph/9312291,
  title  = {Model-Independent Global Constraints on New Physics},
  author = {C. P. Burgess and S. Godfrey and H. König and D. London and I. Maksymyk},
  journal= {arXiv preprint arXiv:hep-ph/9312291},
  year   = {2009}
}

Comments

plain TeX, 68 pages, 2 figures (postscript files appended), McGill-93/12, NEIPH-93-008, OCIP/C-93-6, UQAM-PHE-93/08, UdeM-LPN-TH-93-155

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