Comprehensive analysis of data pertaining to the weak neutral current and the intermediate-vector-boson masses
- 1 September 1987
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review D
- Vol. 36 (5) , 1385-1407
- https://doi.org/10.1103/physrevd.36.1385
Abstract
The results of a comprehensive analysis of existing data on the weak neutral current and the W and Z masses are presented. The principal results are the following. (a) There is no evidence for any deviation from the standard model. (b) A global fit to all data yields ≡1- / =0.230±0.0048, where this error and all others given here include full statistical, systematic, and theoretical uncertainties (computed assuming three fermion families, ≤100 GeV, and ≤1 TeV). (c) Allowing ρ≡ /( ) as well as to vary one obtains =0.229±0.0064 and ρ=0.998±0.0086. This implies 90%-confidence-level (C.L.) upper limits of 0.047 and 0.081 for the vacuum expectation values (relative to those of Higgs doublets) for Higgs triplets with weak hypercharge of 0 and ±1, respectively. (d) The parameter ≡Δr-Δ(1-Δr)/ , which is a measure of the radiative corrections relating deep-inelastic neutrino scattering, the W and Z masses, and muon decay, is determined to be 0.112±0.037. This is consistent with the value =0.106 expected for =45 GeV and =100 GeV and establishes the existence of radiative corrections at the 3σ level. (e) The radiative corrections are sensitive to isospin breaking associated with a large .
Keywords
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