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Chiral perturbation theory analysis of the baryon magnetic moments

Nonanalytic $m_q^{1/2}$ and $m_q\ln m_q$ chiral corrections to the baryon magnetic moments are computed. The calculation includes contributions from both intermediate octet and decuplet baryon states. Unlike the one-loop contributions to the baryon axial currents and masses, the contribution from de...

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Autores principales: Jenkins, Elizabeth Ellen, Luke, Michael E., Manohar, Aneesh V., Savage, Martin J.
Lenguaje:eng
Publicado: 1993
Materias:
Acceso en línea:https://dx.doi.org/10.1016/0370-2693(93)90430-P
https://dx.doi.org/10.1016/S0370-2693(96)01378-0
http://cds.cern.ch/record/244043
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author Jenkins, Elizabeth Ellen
Luke, Michael E.
Manohar, Aneesh V.
Savage, Martin J.
author_facet Jenkins, Elizabeth Ellen
Luke, Michael E.
Manohar, Aneesh V.
Savage, Martin J.
author_sort Jenkins, Elizabeth Ellen
collection CERN
description Nonanalytic $m_q^{1/2}$ and $m_q\ln m_q$ chiral corrections to the baryon magnetic moments are computed. The calculation includes contributions from both intermediate octet and decuplet baryon states. Unlike the one-loop contributions to the baryon axial currents and masses, the contribution from decuplet intermediate states does not partially cancel that from octet intermediate states. The fit to the observed magnetic moments including $m_q^{1/2}$ corrections is found to be much worse than the tree level SU(3) fit if values for the baryon-pion axial coupling constants obtained from a tree level extraction are used. Using the axial coupling constant values extracted at one loop results in a better fit to the magnetic moments than the tree level SU(3) fit. There are three linear relations amongst the magnetic moments when $m_q^{1/2}$ corrections are included, and one relation including $m_q^{1/2}$, $m_q\ln m_q$ and $m_q$ corrections. These relations are independent of the axial coupling constants of the baryons and agree well with experiment.
id cern-244043
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1993
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spelling cern-2440432023-03-14T19:59:12Zdoi:10.1016/0370-2693(93)90430-Pdoi:10.1016/S0370-2693(96)01378-0http://cds.cern.ch/record/244043engJenkins, Elizabeth EllenLuke, Michael E.Manohar, Aneesh V.Savage, Martin J.Chiral perturbation theory analysis of the baryon magnetic momentsParticle Physics - TheoryNonanalytic $m_q^{1/2}$ and $m_q\ln m_q$ chiral corrections to the baryon magnetic moments are computed. The calculation includes contributions from both intermediate octet and decuplet baryon states. Unlike the one-loop contributions to the baryon axial currents and masses, the contribution from decuplet intermediate states does not partially cancel that from octet intermediate states. The fit to the observed magnetic moments including $m_q^{1/2}$ corrections is found to be much worse than the tree level SU(3) fit if values for the baryon-pion axial coupling constants obtained from a tree level extraction are used. Using the axial coupling constant values extracted at one loop results in a better fit to the magnetic moments than the tree level SU(3) fit. There are three linear relations amongst the magnetic moments when $m_q^{1/2}$ corrections are included, and one relation including $m_q^{1/2}$, $m_q\ln m_q$ and $m_q$ corrections. These relations are independent of the axial coupling constants of the baryons and agree well with experiment.Nonanalytic m q 1 2 and m q ln m q chiral corrections to the baryon magnetic moments are computed. The calculation includes contributions from both intermediate octet and decuplet baryon states. Unlike the one-loop contributions to the baryon axial currents and masses, the contribution from decuplet intermediate states does not partially cancel that from octet intermediate states. The fit to the observed magnetic moments including m q 1 2 corrections is found to be much worse than the tree level SU(3) fit if values for the baryon-pion axial coupling constants obtained from a tree level extraction are used. Using the axial coupling constant values extracted at one loop results in a better fit to the magnetic moments than the tree level SU(3) fit. There are three linear relations amongst the magnetic moments when m q 1 2 corrections are included, and one relation including m q 1 2 , m q ln m q and m q corrections. These relations are independent of the axial coupling constant of the baryons and agree well with experiment.Nonanalytic $m_q^{1/2}$ and $m_q\ln m_q$ chiral corrections to the baryon magnetic moments are computed. The calculation includes contributions from both intermediate octet and decuplet baryon states. Unlike the one-loop contributions to the baryon axial currents and masses, the contribution from decuplet intermediate states does not partially cancel that from octet intermediate states. The fit to the observed magnetic moments including $m_q^{1/2}$ corrections is found to be much worse than the tree level SU(3) fit if values for the baryon-pion axial coupling constants obtained from a tree level extraction are used. Using the axial coupling constant values extracted at one loop results in a better fit to the magnetic moments than the tree level SU(3) fit. There are three linear relations amongst the magnetic moments when $m_q^{1/2}$ corrections are included, and one relation including $m_q^{1/2}$, $m_q\ln m_q$ and $m_q$ corrections. These relations are independent of the axial coupling constants of the baryons and agree well with experiment.hep-ph/9212226CERN-TH-6735-92UCSD-PTH-92-34CERN-TH-6735-92UCSD-PTH-92-34oai:cds.cern.ch:2440431993
spellingShingle Particle Physics - Theory
Jenkins, Elizabeth Ellen
Luke, Michael E.
Manohar, Aneesh V.
Savage, Martin J.
Chiral perturbation theory analysis of the baryon magnetic moments
title Chiral perturbation theory analysis of the baryon magnetic moments
title_full Chiral perturbation theory analysis of the baryon magnetic moments
title_fullStr Chiral perturbation theory analysis of the baryon magnetic moments
title_full_unstemmed Chiral perturbation theory analysis of the baryon magnetic moments
title_short Chiral perturbation theory analysis of the baryon magnetic moments
title_sort chiral perturbation theory analysis of the baryon magnetic moments
topic Particle Physics - Theory
url https://dx.doi.org/10.1016/0370-2693(93)90430-P
https://dx.doi.org/10.1016/S0370-2693(96)01378-0
http://cds.cern.ch/record/244043
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AT lukemichaele chiralperturbationtheoryanalysisofthebaryonmagneticmoments
AT manoharaneeshv chiralperturbationtheoryanalysisofthebaryonmagneticmoments
AT savagemartinj chiralperturbationtheoryanalysisofthebaryonmagneticmoments