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Finite-Size Scaling of Vector and Axial Current Correlators

Using quenched chiral perturbation theory, we compute the long-distance behaviour of two-point functions of flavour non-singlet axial and vector currents in a finite volume, for small quark masses, and at a fixed gauge-field topology. We also present the corresponding predictions for the unquenched...

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Autores principales: Damgaard, P.H., Hernandez, P., Jansen, K., Laine, M., Lellouch, L.
Lenguaje:eng
Publicado: 2002
Materias:
Acceso en línea:https://dx.doi.org/10.1016/S0550-3213(03)00117-2
http://cds.cern.ch/record/591074
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author Damgaard, P.H.
Hernandez, P.
Jansen, K.
Laine, M.
Lellouch, L.
author_facet Damgaard, P.H.
Hernandez, P.
Jansen, K.
Laine, M.
Lellouch, L.
author_sort Damgaard, P.H.
collection CERN
description Using quenched chiral perturbation theory, we compute the long-distance behaviour of two-point functions of flavour non-singlet axial and vector currents in a finite volume, for small quark masses, and at a fixed gauge-field topology. We also present the corresponding predictions for the unquenched theory at fixed topology. These results can in principle be used to measure the low-energy constants of the chiral Lagrangian, from lattice simulations in volumes much smaller than one pion Compton wavelength. We show that quenching has a dramatic effect on the vector correlator, which is argued to vanish to all orders, while the axial correlator appears to be a robust observable only moderately sensitive to quenching.
id cern-591074
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2002
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spelling cern-5910742023-03-14T17:08:42Zdoi:10.1016/S0550-3213(03)00117-2http://cds.cern.ch/record/591074engDamgaard, P.H.Hernandez, P.Jansen, K.Laine, M.Lellouch, L.Finite-Size Scaling of Vector and Axial Current CorrelatorsParticle Physics - LatticeUsing quenched chiral perturbation theory, we compute the long-distance behaviour of two-point functions of flavour non-singlet axial and vector currents in a finite volume, for small quark masses, and at a fixed gauge-field topology. We also present the corresponding predictions for the unquenched theory at fixed topology. These results can in principle be used to measure the low-energy constants of the chiral Lagrangian, from lattice simulations in volumes much smaller than one pion Compton wavelength. We show that quenching has a dramatic effect on the vector correlator, which is argued to vanish to all orders, while the axial correlator appears to be a robust observable only moderately sensitive to quenching.Using quenched chiral perturbation theory, we compute the long-distance behaviour of two-point functions of flavour non-singlet axial and vector currents in a finite volume, for small quark masses, and at a fixed gauge-field topology. We also present the corresponding predictions for the unquenched theory at fixed topology. These results can in principle be used to measure the low-energy constants of the chiral Lagrangian, from lattice simulations in volumes much smaller than one pion Compton wavelength. We show that quenching has a dramatic effect on the vector correlator, which is argued to vanish to all orders, while the axial correlator appears to be a robust observable only moderately sensitive to quenching.hep-lat/0211020CERN-TH-2002-304CPT-2002-P-4442DESY-02-178IFIC-02-52FTUV-02-1111CERN-TH-2002-304CPT-4442DESY-02-178DESY-2002-178FTUV-2002-1111IFIC-2002-52oai:cds.cern.ch:5910742002-11-11
spellingShingle Particle Physics - Lattice
Damgaard, P.H.
Hernandez, P.
Jansen, K.
Laine, M.
Lellouch, L.
Finite-Size Scaling of Vector and Axial Current Correlators
title Finite-Size Scaling of Vector and Axial Current Correlators
title_full Finite-Size Scaling of Vector and Axial Current Correlators
title_fullStr Finite-Size Scaling of Vector and Axial Current Correlators
title_full_unstemmed Finite-Size Scaling of Vector and Axial Current Correlators
title_short Finite-Size Scaling of Vector and Axial Current Correlators
title_sort finite-size scaling of vector and axial current correlators
topic Particle Physics - Lattice
url https://dx.doi.org/10.1016/S0550-3213(03)00117-2
http://cds.cern.ch/record/591074
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