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The strange quark mass from QCD sum rules

The strange quark mass is calculated from QCD sum rules for the divergence of the vector as well as axial-vector current in the next-next-to-leading logarithmic approximation. The determination for the divergence of the axial-vector current is found to be unreliable due to large uncertainties in the...

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Detalles Bibliográficos
Autores principales: Jamin, Mattias, Munz, Manfred
Lenguaje:eng
Publicado: 1994
Materias:
Acceso en línea:https://dx.doi.org/10.1007/BF01579638
http://cds.cern.ch/record/268646
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author Jamin, Mattias
Munz, Manfred
author_facet Jamin, Mattias
Munz, Manfred
author_sort Jamin, Mattias
collection CERN
description The strange quark mass is calculated from QCD sum rules for the divergence of the vector as well as axial-vector current in the next-next-to-leading logarithmic approximation. The determination for the divergence of the axial-vector current is found to be unreliable due to large uncertainties in the hadronic parametrisation of the two-point function. From the sum rule for the divergence of the vector current, we obtain a value of m_s\equiv\mb_s(1\,\gev)=189\pm32\, \mev, where the error is dominated by the unknown perturbative {\cal O}(\alpha_s^3) correction. Assuming a continued geometric growth of the perturbation series, we find m_s=178\pm18\,\mev. Using both determinations of m_s, together with quark-mass ratios from chiral perturbation theory, we also give estimates of the light quark masses m_u and m_d.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1994
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spelling cern-2686462021-07-15T22:58:08Zdoi:10.1007/BF01579638http://cds.cern.ch/record/268646engJamin, MattiasMunz, ManfredThe strange quark mass from QCD sum rulesParticle Physics - TheoryThe strange quark mass is calculated from QCD sum rules for the divergence of the vector as well as axial-vector current in the next-next-to-leading logarithmic approximation. The determination for the divergence of the axial-vector current is found to be unreliable due to large uncertainties in the hadronic parametrisation of the two-point function. From the sum rule for the divergence of the vector current, we obtain a value of m_s\equiv\mb_s(1\,\gev)=189\pm32\, \mev, where the error is dominated by the unknown perturbative {\cal O}(\alpha_s^3) correction. Assuming a continued geometric growth of the perturbation series, we find m_s=178\pm18\,\mev. Using both determinations of m_s, together with quark-mass ratios from chiral perturbation theory, we also give estimates of the light quark masses m_u and m_d.The strange quark mass is calculated from QCD sum rules for the divergence of the vector as well as axial-vector current in the next-next-to-leading logarithmic approximation. The determination for the divergence of the axial-vector current is found to be unreliable due to large uncertainties in the hadronic parametrisation of the two-point function. From the sum rule for the divergence of the vector current, we obtain a value of $m_s\equiv\mb_s(1\,\gev)=189\pm32\,\mev$, where the error is dominated by the unknown perturbative ${\cal O}(\alpha_s^3)$ correction. Assuming a continued geometric growth of the perturbation series, we find $m_s=178\pm18\,\mev$. Using both determinations of $m_s$, together with quark-mass ratios from chiral perturbation theory, we also give estimates of the light quark masses $m_u$ and $m_d$.hep-ph/9409335CERN-TH-7435-94TUM-T31-78-94CERN-TH-7435-94TUM-T-31-94-78oai:cds.cern.ch:2686461994-09-16
spellingShingle Particle Physics - Theory
Jamin, Mattias
Munz, Manfred
The strange quark mass from QCD sum rules
title The strange quark mass from QCD sum rules
title_full The strange quark mass from QCD sum rules
title_fullStr The strange quark mass from QCD sum rules
title_full_unstemmed The strange quark mass from QCD sum rules
title_short The strange quark mass from QCD sum rules
title_sort strange quark mass from qcd sum rules
topic Particle Physics - Theory
url https://dx.doi.org/10.1007/BF01579638
http://cds.cern.ch/record/268646
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