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Z Z' Mixing in Presence of Standard Weak Loop Corrections

We derive a method for a common treatment of Z' exchange, QED corrections, and weak loops. It is based on the form factor approach to the description of weak loop corrections to partial Z widths and cross sections. Problems connected with ZZ' mixing are discussed with special care. Our the...

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Detalles Bibliográficos
Autores principales: Leike, A., Riemann, S., Riemann, T.
Lenguaje:eng
Publicado: 1998
Materias:
Acceso en línea:http://cds.cern.ch/record/362849
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author Leike, A.
Riemann, S.
Riemann, T.
author_facet Leike, A.
Riemann, S.
Riemann, T.
author_sort Leike, A.
collection CERN
description We derive a method for a common treatment of Z' exchange, QED corrections, and weak loops. It is based on the form factor approach to the description of weak loop corrections to partial Z widths and cross sections. Problems connected with ZZ' mixing are discussed with special care. Our theoretical results are applied to the package ZFITTER. We demonstrate two different ways to the data analysis - one based on an extension of the standard model cross sections, the other on model-independent formulae together with the Z width calculations in presence of a Z'. With the resulting package ZEFIT+ZFITTER, LEP1 data from fermion pair production, including Bhabha scattering, can be analysed on, but also off the Z peak. Further, the code may be used at very high energies, e.g. in the region of a possible future linear e+e- collider.
id cern-362849
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1998
record_format invenio
spelling cern-3628492023-03-12T05:42:25Zhttp://cds.cern.ch/record/362849engLeike, A.Riemann, S.Riemann, T.Z Z' Mixing in Presence of Standard Weak Loop CorrectionsParticle Physics - PhenomenologyWe derive a method for a common treatment of Z' exchange, QED corrections, and weak loops. It is based on the form factor approach to the description of weak loop corrections to partial Z widths and cross sections. Problems connected with ZZ' mixing are discussed with special care. Our theoretical results are applied to the package ZFITTER. We demonstrate two different ways to the data analysis - one based on an extension of the standard model cross sections, the other on model-independent formulae together with the Z width calculations in presence of a Z'. With the resulting package ZEFIT+ZFITTER, LEP1 data from fermion pair production, including Bhabha scattering, can be analysed on, but also off the Z peak. Further, the code may be used at very high energies, e.g. in the region of a possible future linear e+e- collider.We derive a method for a common treatment of Z' exchange, QED corrections, and weak loops. It is based on the form factor approach to the description of weak loop corrections to partial Z widths and cross sections. Problems connected with ZZ' mixing are discussed with special care. Our theoretical results are applied to the package ZFITTER. We demonstrate two different ways to the data analysis - one based on an extension of the standard model cross sections, the other on model-independent formulae together with the Z width calculations in presence of a Z'. With the resulting package ZEFIT+ZFITTER, LEP1 data from fermion pair production, including Bhabha scattering, can be analysed on, but also off the Z peak. Further, the code may be used at very high energies, e.g. in the region of a possible future linear e+e- collider.We derive a method for a common treatment of Z' exchange, QED corrections, and weak loops. It is based on the form factor approach to the description of weak loop corrections to partial Z widths and cross sections. Problems connected with ZZ' mixing are discussed with special care. Our theoretical results are applied to the package ZFITTER. We demonstrate two different ways to the data analysis - one based on an extension of the standard model cross sections, the other on model-independent formulae together with the Z width calculations in presence of a Z'. With the resulting package ZEFIT+ZFITTER, LEP1 data from fermion pair production, including Bhabha scattering, can be analysed on, but also off the Z peak. Further, the code may be used at very high energies, e.g. in the region of a possible future linear e+e- collider.We derive a method for a common treatment of Z' exchange, QED corrections, and weak loops. It is based on the form factor approach to the description of weak loop corrections to partial Z widths and cross sections. Problems connected with ZZ' mixing are discussed with special care. Our theoretical results are applied to the package ZFITTER. We demonstrate two different ways to the data analysis - one based on an extension of the standard model cross sections, the other on model-independent formulae together with the Z width calculations in presence of a Z'. With the resulting package ZEFIT+ZFITTER, LEP1 data from fermion pair production, including Bhabha scattering, can be analysed on, but also off the Z peak. Further, the code may be used at very high energies, e.g. in the region of a possible future linear e+e- collider.hep-ph/9808374LMU-91-06L3-NOTE-1074LMU-91-06oai:cds.cern.ch:3628491998-08-21
spellingShingle Particle Physics - Phenomenology
Leike, A.
Riemann, S.
Riemann, T.
Z Z' Mixing in Presence of Standard Weak Loop Corrections
title Z Z' Mixing in Presence of Standard Weak Loop Corrections
title_full Z Z' Mixing in Presence of Standard Weak Loop Corrections
title_fullStr Z Z' Mixing in Presence of Standard Weak Loop Corrections
title_full_unstemmed Z Z' Mixing in Presence of Standard Weak Loop Corrections
title_short Z Z' Mixing in Presence of Standard Weak Loop Corrections
title_sort z z' mixing in presence of standard weak loop corrections
topic Particle Physics - Phenomenology
url http://cds.cern.ch/record/362849
work_keys_str_mv AT leikea zzmixinginpresenceofstandardweakloopcorrections
AT riemanns zzmixinginpresenceofstandardweakloopcorrections
AT riemannt zzmixinginpresenceofstandardweakloopcorrections