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Chiral symmetry and dispersion relations: from $\pi \pi$ scattering to hadronic light-by-light.

<!--HTML--><p>Chiral symmetry provides strong constraints on hadronic matrix elements at low energy, which are most efficiently derived with chiral perturbation theory. As an effective quantum field theory the latter also accounts for rescattering or unitarity effects, albeit only pertur...

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Detalles Bibliográficos
Autor principal: Colangelo, Gilberto
Lenguaje:eng
Publicado: 2018
Materias:
Acceso en línea:http://cds.cern.ch/record/2301273
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author Colangelo, Gilberto
author_facet Colangelo, Gilberto
author_sort Colangelo, Gilberto
collection CERN
description <!--HTML--><p>Chiral symmetry provides strong constraints on hadronic matrix elements at low energy, which are most efficiently derived with chiral perturbation theory. As an effective quantum field theory the latter also accounts for rescattering or unitarity effects, albeit only perturbatively, via the loop expansion. In cases where rescattering effects are important it becomes necessary to go beyond the perturbative expansion, e.g. by using dispersion relations. A matching between the chiral and the dispersive representation provides in several cases results of high precision. I will discuss this approach with the help of a few examples, like $\pi \pi$ scattering (which has been tested successfully by CERN experiments like NA48/2 and DIRAC), $\eta \to 3 \pi$ and the hadronic light-by-light contribution to $(g-2)_\mu$. For the latter quantity the implementation of the dispersive approach has opened up the way to a model-independent calculation and the concrete possibility to significantly reduce the theoretical uncertainty.</p>
id cern-2301273
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2018
record_format invenio
spelling cern-23012732022-11-02T22:20:59Zhttp://cds.cern.ch/record/2301273engColangelo, GilbertoChiral symmetry and dispersion relations: from $\pi \pi$ scattering to hadronic light-by-light.Chiral symmetry and dispersion relations: from $\pi \pi$ scattering to hadronic light-by-light.Theory Colloquium<!--HTML--><p>Chiral symmetry provides strong constraints on hadronic matrix elements at low energy, which are most efficiently derived with chiral perturbation theory. As an effective quantum field theory the latter also accounts for rescattering or unitarity effects, albeit only perturbatively, via the loop expansion. In cases where rescattering effects are important it becomes necessary to go beyond the perturbative expansion, e.g. by using dispersion relations. A matching between the chiral and the dispersive representation provides in several cases results of high precision. I will discuss this approach with the help of a few examples, like $\pi \pi$ scattering (which has been tested successfully by CERN experiments like NA48/2 and DIRAC), $\eta \to 3 \pi$ and the hadronic light-by-light contribution to $(g-2)_\mu$. For the latter quantity the implementation of the dispersive approach has opened up the way to a model-independent calculation and the concrete possibility to significantly reduce the theoretical uncertainty.</p>oai:cds.cern.ch:23012732018
spellingShingle Theory Colloquium
Colangelo, Gilberto
Chiral symmetry and dispersion relations: from $\pi \pi$ scattering to hadronic light-by-light.
title Chiral symmetry and dispersion relations: from $\pi \pi$ scattering to hadronic light-by-light.
title_full Chiral symmetry and dispersion relations: from $\pi \pi$ scattering to hadronic light-by-light.
title_fullStr Chiral symmetry and dispersion relations: from $\pi \pi$ scattering to hadronic light-by-light.
title_full_unstemmed Chiral symmetry and dispersion relations: from $\pi \pi$ scattering to hadronic light-by-light.
title_short Chiral symmetry and dispersion relations: from $\pi \pi$ scattering to hadronic light-by-light.
title_sort chiral symmetry and dispersion relations: from $\pi \pi$ scattering to hadronic light-by-light.
topic Theory Colloquium
url http://cds.cern.ch/record/2301273
work_keys_str_mv AT colangelogilberto chiralsymmetryanddispersionrelationsfrompipiscatteringtohadroniclightbylight