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Gauge-symmetric approach to effective Lagrangians: the $\eta$' meson from QCD

We present a general scheme for extracting effective degrees of freedom from an underlying fundamental Lagrangian, through a series of well-defined transformations in the functional integral of the cut-off theory. This is done by introducing collective fields in a gauge-symmetric manner. Through app...

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Detalles Bibliográficos
Autores principales: Damgaard, P.H., Nielsen, Holger Bech, Sollacher, R.
Lenguaje:eng
Publicado: 1994
Materias:
Acceso en línea:https://dx.doi.org/10.1016/0550-3213(94)90254-2
http://cds.cern.ch/record/252572
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author Damgaard, P.H.
Nielsen, Holger Bech
Sollacher, R.
author_facet Damgaard, P.H.
Nielsen, Holger Bech
Sollacher, R.
author_sort Damgaard, P.H.
collection CERN
description We present a general scheme for extracting effective degrees of freedom from an underlying fundamental Lagrangian, through a series of well-defined transformations in the functional integral of the cut-off theory. This is done by introducing collective fields in a gauge-symmetric manner. Through appropriate gauge fixings of this symmetry one can remove long-distance degrees of freedom from the underlying theory, replacing them by the collective fields. Applying this technique to QCD, we set out to extract the long-distance dynamics in the pseudoscalar flavour singlet sector through a gauging (and subsequent gauge fixing) of the $U(1)_A$ flavour symmetry which is broken by the anomaly. By this series of exact transformations of a cut-off generating functional for QCD, we arrive at a theory describing the long-distance physics of a pseudoscalar flavour singlet meson coupled to the residual quark-gluon degrees of freedom. As examples of how known low-energy physics can be reproduced in this formulation, we rederive the Witten-Veneziano relation between the $\eta'$ mass and the topological susceptibility, now for any value of the number of colours $N_c$.
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institution Organización Europea para la Investigación Nuclear
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spelling cern-2525722020-07-23T02:47:46Zdoi:10.1016/0550-3213(94)90254-2http://cds.cern.ch/record/252572engDamgaard, P.H.Nielsen, Holger BechSollacher, R.Gauge-symmetric approach to effective Lagrangians: the $\eta$' meson from QCDParticle Physics - TheoryWe present a general scheme for extracting effective degrees of freedom from an underlying fundamental Lagrangian, through a series of well-defined transformations in the functional integral of the cut-off theory. This is done by introducing collective fields in a gauge-symmetric manner. Through appropriate gauge fixings of this symmetry one can remove long-distance degrees of freedom from the underlying theory, replacing them by the collective fields. Applying this technique to QCD, we set out to extract the long-distance dynamics in the pseudoscalar flavour singlet sector through a gauging (and subsequent gauge fixing) of the $U(1)_A$ flavour symmetry which is broken by the anomaly. By this series of exact transformations of a cut-off generating functional for QCD, we arrive at a theory describing the long-distance physics of a pseudoscalar flavour singlet meson coupled to the residual quark-gluon degrees of freedom. As examples of how known low-energy physics can be reproduced in this formulation, we rederive the Witten-Veneziano relation between the $\eta'$ mass and the topological susceptibility, now for any value of the number of colours $N_c$.We present a general scheme for extracting effective degrees of freedom from an underlying fundamental lagrangian, through a series of well-defined transformations in the functional integral of the cut-off theory. This is done by introducing collective fields in a gauge-symmetric manner. Through appropriate gauge fixings of this symmetry one can remove long-distance degrees of freedom from the underlying theory, replacing them by the collective fields. Applying this technique to QCD, we set out to extract the long-distance dynamics in the pseudoscalar flavour singlet sector through a gauging (and subsequent gauge fixing) of the U (1) A flavour symmetry which is broken by the anomaly. By this series of exact transformations of a cut-off generating functional for QCD, we arrive at a theory describing the long-distance physics of a pseudoscalar flavour singlet meson coupled to the residual quark-gluon degrees of freedom. As an example we show how to derive a Witten-Veneziano-like relation between the η ′ mass and the topological susceptibility. The resulting effective lagrangian contains an axial vector field, which shares the relevant features with the Veneziano ghost. This field is responsible for removing the η ′ degree of freedom from the fundamental QCD lagrangian.hep-ph/9308259CERN-TH-6959-93CERN-TH-6959-93oai:cds.cern.ch:2525721994
spellingShingle Particle Physics - Theory
Damgaard, P.H.
Nielsen, Holger Bech
Sollacher, R.
Gauge-symmetric approach to effective Lagrangians: the $\eta$' meson from QCD
title Gauge-symmetric approach to effective Lagrangians: the $\eta$' meson from QCD
title_full Gauge-symmetric approach to effective Lagrangians: the $\eta$' meson from QCD
title_fullStr Gauge-symmetric approach to effective Lagrangians: the $\eta$' meson from QCD
title_full_unstemmed Gauge-symmetric approach to effective Lagrangians: the $\eta$' meson from QCD
title_short Gauge-symmetric approach to effective Lagrangians: the $\eta$' meson from QCD
title_sort gauge-symmetric approach to effective lagrangians: the $\eta$' meson from qcd
topic Particle Physics - Theory
url https://dx.doi.org/10.1016/0550-3213(94)90254-2
http://cds.cern.ch/record/252572
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