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Gauge Coupling Instability and Dynamical Mass Generation in N=1 Supersymmetric QED(3)

Using superfield Dyson-Schwinger equations, we compute the infrared dynamics of the semi-amputated full vertex, corresponding to the effective running gauge coupling, in N-flavour {\mathcal N}=1 supersymmetric QED(3). It is shown that the presence of a supersymmetry-preserving mass for the matter mu...

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Detalles Bibliográficos
Autores principales: Campbell-Smith, A, Mavromatos, Nikolaos E, Papavassiliou, J
Lenguaje:eng
Publicado: 1999
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevD.60.085002
http://cds.cern.ch/record/387818
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author Campbell-Smith, A
Mavromatos, Nikolaos E
Papavassiliou, J
author_facet Campbell-Smith, A
Mavromatos, Nikolaos E
Papavassiliou, J
author_sort Campbell-Smith, A
collection CERN
description Using superfield Dyson-Schwinger equations, we compute the infrared dynamics of the semi-amputated full vertex, corresponding to the effective running gauge coupling, in N-flavour {\mathcal N}=1 supersymmetric QED(3). It is shown that the presence of a supersymmetry-preserving mass for the matter multiplet stabilizes the infrared gauge coupling against oscillations present in the massless case, and we therefore infer that the massive vacuum is thus selected at the level of the (quantum) effective action. We further demonstrate that such a mass can indeed be generated dynamically in a self-consistent way by appealing to the superfield Dyson-Schwinger gap equation for the full matter propagator.
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institution Organización Europea para la Investigación Nuclear
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publishDate 1999
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spelling cern-3878182019-09-30T06:29:59Zdoi:10.1103/PhysRevD.60.085002http://cds.cern.ch/record/387818engCampbell-Smith, AMavromatos, Nikolaos EPapavassiliou, JGauge Coupling Instability and Dynamical Mass Generation in N=1 Supersymmetric QED(3)Particle Physics - TheoryUsing superfield Dyson-Schwinger equations, we compute the infrared dynamics of the semi-amputated full vertex, corresponding to the effective running gauge coupling, in N-flavour {\mathcal N}=1 supersymmetric QED(3). It is shown that the presence of a supersymmetry-preserving mass for the matter multiplet stabilizes the infrared gauge coupling against oscillations present in the massless case, and we therefore infer that the massive vacuum is thus selected at the level of the (quantum) effective action. We further demonstrate that such a mass can indeed be generated dynamically in a self-consistent way by appealing to the superfield Dyson-Schwinger gap equation for the full matter propagator.hep-th/9905132CERN-TH-99-141OUTP-99-24-Poai:cds.cern.ch:3878181999-05-19
spellingShingle Particle Physics - Theory
Campbell-Smith, A
Mavromatos, Nikolaos E
Papavassiliou, J
Gauge Coupling Instability and Dynamical Mass Generation in N=1 Supersymmetric QED(3)
title Gauge Coupling Instability and Dynamical Mass Generation in N=1 Supersymmetric QED(3)
title_full Gauge Coupling Instability and Dynamical Mass Generation in N=1 Supersymmetric QED(3)
title_fullStr Gauge Coupling Instability and Dynamical Mass Generation in N=1 Supersymmetric QED(3)
title_full_unstemmed Gauge Coupling Instability and Dynamical Mass Generation in N=1 Supersymmetric QED(3)
title_short Gauge Coupling Instability and Dynamical Mass Generation in N=1 Supersymmetric QED(3)
title_sort gauge coupling instability and dynamical mass generation in n=1 supersymmetric qed(3)
topic Particle Physics - Theory
url https://dx.doi.org/10.1103/PhysRevD.60.085002
http://cds.cern.ch/record/387818
work_keys_str_mv AT campbellsmitha gaugecouplinginstabilityanddynamicalmassgenerationinn1supersymmetricqed3
AT mavromatosnikolaose gaugecouplinginstabilityanddynamicalmassgenerationinn1supersymmetricqed3
AT papavassiliouj gaugecouplinginstabilityanddynamicalmassgenerationinn1supersymmetricqed3