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Do present LEP data provide evidence for electroweak corrections?

The Born approximation, based on $\bar\alpha \equiv\alpha (m_Z)$ instead of $\alpha$, reproduces all electroweak precision measurements within their $(1\sigma)$ accuracy. The low upper limits for the genuinely electroweak corrections constitute one of the major achievements of LEP. The astonishing s...

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Detalles Bibliográficos
Autores principales: Novikov, V.A., Okun, L.B., Vysotsky, M.I.
Lenguaje:eng
Publicado: 1993
Materias:
Acceso en línea:https://dx.doi.org/10.1142/S0217732393002889
http://cds.cern.ch/record/252026
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author Novikov, V.A.
Okun, L.B.
Vysotsky, M.I.
author_facet Novikov, V.A.
Okun, L.B.
Vysotsky, M.I.
author_sort Novikov, V.A.
collection CERN
description The Born approximation, based on $\bar\alpha \equiv\alpha (m_Z)$ instead of $\alpha$, reproduces all electroweak precision measurements within their $(1\sigma)$ accuracy. The low upper limits for the genuinely electroweak corrections constitute one of the major achievements of LEP. The astonishing smallness of these corrections results from the cancellation of a large positive contribution from the heavy top quark and large negative contributions from all other virtual particles. It is precisely the non-observation of electroweak radiative corrections that places stringent upper and lower limits on the top mass.
id cern-252026
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1993
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spelling cern-2520262023-03-14T18:52:31Zdoi:10.1142/S0217732393002889http://cds.cern.ch/record/252026engNovikov, V.A.Okun, L.B.Vysotsky, M.I.Do present LEP data provide evidence for electroweak corrections?Particle Physics - PhenomenologyThe Born approximation, based on $\bar\alpha \equiv\alpha (m_Z)$ instead of $\alpha$, reproduces all electroweak precision measurements within their $(1\sigma)$ accuracy. The low upper limits for the genuinely electroweak corrections constitute one of the major achievements of LEP. The astonishing smallness of these corrections results from the cancellation of a large positive contribution from the heavy top quark and large negative contributions from all other virtual particles. It is precisely the non-observation of electroweak radiative corrections that places stringent upper and lower limits on the top mass.The Born approximation, based on $\bar\alpha \equiv\alpha (m_Z)$ instead of $\alpha$, reproduces all electroweak precision measurements within their $(1\sigma)$ accuracy. The low upper limits for the genuinely electroweak corrections constitute one of the major achievements of LEP. The astonishing smallness of these corrections results from the cancellation of a large positive contribution from the heavy top quark and large negative contributions from all other virtual particles. It is precisely the non-observation of electroweak radiative corrections that places stringent upper and lower limits on the top mass.hep-ph/9308203CERN-TH-6943-93CERN-TH-6943-93oai:cds.cern.ch:2520261993
spellingShingle Particle Physics - Phenomenology
Novikov, V.A.
Okun, L.B.
Vysotsky, M.I.
Do present LEP data provide evidence for electroweak corrections?
title Do present LEP data provide evidence for electroweak corrections?
title_full Do present LEP data provide evidence for electroweak corrections?
title_fullStr Do present LEP data provide evidence for electroweak corrections?
title_full_unstemmed Do present LEP data provide evidence for electroweak corrections?
title_short Do present LEP data provide evidence for electroweak corrections?
title_sort do present lep data provide evidence for electroweak corrections?
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1142/S0217732393002889
http://cds.cern.ch/record/252026
work_keys_str_mv AT novikovva dopresentlepdataprovideevidenceforelectroweakcorrections
AT okunlb dopresentlepdataprovideevidenceforelectroweakcorrections
AT vysotskymi dopresentlepdataprovideevidenceforelectroweakcorrections