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A precise determination of the electroweak mixing angle from semileptonic neutrino scattering
After the discovery of the weak neutral current,' great efforts were undertaken to test the prediction of the Glashow-Salam-Weinberg model that stated that the coupling in all neutral current phenomena depends on one single parameter, $sin^{2}\Theta_{w}$. Indeed, a unique value of this paramete...
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Lenguaje: | eng |
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1987
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Acceso en línea: | https://dx.doi.org/10.1111/j.1749-6632.1987.tb40374.x http://cds.cern.ch/record/2301218 |
Sumario: | After the discovery of the weak neutral current,' great efforts were undertaken to test the prediction of the Glashow-Salam-Weinberg model that stated that the coupling in all neutral current phenomena depends on one single parameter, $sin^{2}\Theta_{w}$. Indeed, a unique value of this parameter can explain the couplings measured in many different processes, including leptonic and semileptonic neutrino scattering, asymmetries in electron-nucleon, electron-positron, and muon interactions, parity violating effects in atomic transitions, and the masses of the W and z bosons. $^{2}$ |
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