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A relativistic coupled-channel formalism for the pion form factor
The electromagnetic form factor of a confined quark-antiquark pair is calculated within the framework of point-form relativistic quantum mechanics. The dynamics of theexchanged photon is explicitly taken into account by treating theelectromagnetic scattering of an electron by a meson as a relativist...
Autores principales: | , , , |
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Lenguaje: | eng |
Publicado: |
2009
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1051/epjconf/20100303031 http://cds.cern.ch/record/1229597 |
_version_ | 1780918465806204928 |
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author | Biernat, E.P. Schweiger, W. Fuchsberger, K. Klink, W.H. |
author_facet | Biernat, E.P. Schweiger, W. Fuchsberger, K. Klink, W.H. |
author_sort | Biernat, E.P. |
collection | CERN |
description | The electromagnetic form factor of a confined quark-antiquark pair is calculated within the framework of point-form relativistic quantum mechanics. The dynamics of theexchanged photon is explicitly taken into account by treating theelectromagnetic scattering of an electron by a meson as a relativistic two-channel problem for a Bakamjian-Thomas type mass operator. This approach guarantees Poincare invariance. Using a Feshbach reduction the coupled-channel problem can be converted into a one-channel problem for the elastic electron-meson channel. By comparing the one-photon-exchange optical potential at the constituent and hadronic levels, we are able to unambiguously identify the electromagnetic meson form factor. Violations of cluster-separability properties, which are inherent in the Bakamjian-Thomas approach, become negligible for sufficiently large invariant mass of the electron-meson system. In the limit of an infinitely large invariant mass, an equivalence with form-factor calculations done in front-form relativistic quantum mechanics is established analytically. |
id | cern-1229597 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2009 |
record_format | invenio |
spelling | cern-12295972021-05-11T13:29:13Zdoi:10.1051/epjconf/20100303031http://cds.cern.ch/record/1229597engBiernat, E.P.Schweiger, W.Fuchsberger, K.Klink, W.H.A relativistic coupled-channel formalism for the pion form factorNuclear PhysicsThe electromagnetic form factor of a confined quark-antiquark pair is calculated within the framework of point-form relativistic quantum mechanics. The dynamics of theexchanged photon is explicitly taken into account by treating theelectromagnetic scattering of an electron by a meson as a relativistic two-channel problem for a Bakamjian-Thomas type mass operator. This approach guarantees Poincare invariance. Using a Feshbach reduction the coupled-channel problem can be converted into a one-channel problem for the elastic electron-meson channel. By comparing the one-photon-exchange optical potential at the constituent and hadronic levels, we are able to unambiguously identify the electromagnetic meson form factor. Violations of cluster-separability properties, which are inherent in the Bakamjian-Thomas approach, become negligible for sufficiently large invariant mass of the electron-meson system. In the limit of an infinitely large invariant mass, an equivalence with form-factor calculations done in front-form relativistic quantum mechanics is established analytically.arXiv:0912.3454oai:cds.cern.ch:12295972009-12-18 |
spellingShingle | Nuclear Physics Biernat, E.P. Schweiger, W. Fuchsberger, K. Klink, W.H. A relativistic coupled-channel formalism for the pion form factor |
title | A relativistic coupled-channel formalism for the pion form factor |
title_full | A relativistic coupled-channel formalism for the pion form factor |
title_fullStr | A relativistic coupled-channel formalism for the pion form factor |
title_full_unstemmed | A relativistic coupled-channel formalism for the pion form factor |
title_short | A relativistic coupled-channel formalism for the pion form factor |
title_sort | relativistic coupled-channel formalism for the pion form factor |
topic | Nuclear Physics |
url | https://dx.doi.org/10.1051/epjconf/20100303031 http://cds.cern.ch/record/1229597 |
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