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arXiv:hep-ph/9411203·v1·High Energy Physics — Phenomenology

Implications of High Precision Experiments and the CDF Top Quark Candidates

Jens Erler🇺🇸 · Paul Langacker🇺🇸

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Abstract

We discuss the consequences of recent experimental results from CDF, SLC, LEP and elsewhere for the Standard Model and for new physics. A global fit to all indirect precision data yields ~GeV, , and , where the central values are for GeV and the second uncertainties are for GeV (+) and 60 GeV (-). The value is in remarkable agreement with the value GeV suggested by the CDF candidate events. There is a slight preference for a light Higgs with (880) GeV at 95\% c.l. if the CDF value is (not) included. The sensitivity is, however, due almost entirely to the anomalously large observed values for the width and left-right asymmetry. The value of alpha_s (from the lineshape) is clean theoretically assuming the Standard Model, but is sensitive to the presence of new physics contributions to the vertex. Allowing a vertex correction one obtains the significantly lower value alpha_s = 0.111 \pm 0.009, in better agreement with low energy determinations, and . There is now enough data to perform more general fits to parameters describing new physics effects and to separate these from and . Allowing the parameter , which describes sources of breaking beyond the Standard Model, to be free one finds , remarkably close to unity. One can also separate the new physics contributions to the oblique parameters , and , which all take values consistent with zero. The effects of supersymmetry on the determination of the SM parameters are discussed.

Comments: 23 pages REVTeX + 3 figures (not included); complete postscript file available via anonymous ftp ftp://dept.physics.upenn.edu/pub/Langacker/statussmprep.ps

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