Precision Electroweak Measurements on the Z Resonance
The ALEPH Collaboration, the DELPHI Collaboration, the L3, Collaboration, the OPAL Collaboration, the SLD Collaboration, the LEP, Electroweak Working Group, the SLD electroweak, heavy flavour groups

TL;DR
This paper presents comprehensive electroweak measurements at the Z resonance from LEP and SLC, confirming Standard Model predictions with high precision and providing constraints on fundamental particle properties.
Contribution
It provides the final combined analysis of Z resonance data, including precise measurements of Z boson parameters, neutrino species, and electroweak couplings, with tests of radiative corrections and Standard Model consistency.
Findings
Number of light neutrino species: 2.9840±0.0082
Electroweak radiative corrections observed at 5 sigma significance
Largest deviation in b-quark forward-backward asymmetry at 2.8 sigma
Abstract
We report on the final electroweak measurements performed with data taken at the Z resonance by the experiments operating at the electron-positron colliders SLC and LEP. The data consist of 17 million Z decays accumulated by the ALEPH, DELPHI, L3 and OPAL experiments at LEP, and 600 thousand Z decays by the SLD experiment using a polarised beam at SLC. The measurements include cross-sections, forward-backward asymmetries and polarised asymmetries. The mass and width of the Z boson, and , and its couplings to fermions, for example the parameter and the effective electroweak mixing angle, are precisely measured. The number of light neutrino species is determined to be 2.9840+/-0.0082. The results are compared to the predictions of the Standard Model. Electroweak radiative corrections beyond the running of the QED and QCD coupling constants are observed with a…
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