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An all-order discontinuity at the electroweak phase transition

We define a non-local gauge-invariant Green's function which can distinguish between the symmetric (confinement) and broken (Higgs) phases of the hot SU(2)xU(1) electroweak theory to all orders in the perturbative expansion. It is related to the coupling of the Chern-Simons number to a massless...

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Detalles Bibliográficos
Autores principales: Laine, M., Shaposhnikov, Mikhail E.
Lenguaje:eng
Publicado: 1999
Materias:
Acceso en línea:https://dx.doi.org/10.1016/S0370-2693(99)01014-X
http://cds.cern.ch/record/394710
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author Laine, M.
Shaposhnikov, Mikhail E.
author_facet Laine, M.
Shaposhnikov, Mikhail E.
author_sort Laine, M.
collection CERN
description We define a non-local gauge-invariant Green's function which can distinguish between the symmetric (confinement) and broken (Higgs) phases of the hot SU(2)xU(1) electroweak theory to all orders in the perturbative expansion. It is related to the coupling of the Chern-Simons number to a massless Abelian gauge field. The result implies either that there is a way to distinguish between the phases, even though the macroscopic thermodynamical properties of the system have been observed to be smoothly connected, or that the perturbative Coleman-Hill theorem on which the argument is based, is circumvented by non-perturbative effects. We point out that this question could in principle be studied with three-dimensional lattice simulations.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1999
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spelling cern-3947102023-03-14T18:45:26Zdoi:10.1016/S0370-2693(99)01014-Xhttp://cds.cern.ch/record/394710engLaine, M.Shaposhnikov, Mikhail E.An all-order discontinuity at the electroweak phase transitionParticle Physics - TheoryWe define a non-local gauge-invariant Green's function which can distinguish between the symmetric (confinement) and broken (Higgs) phases of the hot SU(2)xU(1) electroweak theory to all orders in the perturbative expansion. It is related to the coupling of the Chern-Simons number to a massless Abelian gauge field. The result implies either that there is a way to distinguish between the phases, even though the macroscopic thermodynamical properties of the system have been observed to be smoothly connected, or that the perturbative Coleman-Hill theorem on which the argument is based, is circumvented by non-perturbative effects. We point out that this question could in principle be studied with three-dimensional lattice simulations.We define a non-local gauge-invariant Green's function which can distinguish between the symmetric (confinement) and broken (Higgs) phases of the hot SU(2)xU(1) electroweak theory to all orders in the perturbative expansion. It is related to the coupling of the Chern-Simons number to a massless Abelian gauge field. The result implies either that there is a way to distinguish between the phases, even though the macroscopic thermodynamical properties of the system have been observed to be smoothly connected, or that the perturbative Coleman-Hill theorem on which the argument is based, is circumvented by non-perturbative effects. We point out that this question could in principle be studied with three-dimensional lattice simulations.hep-th/9907194CERN-TH-99-206UNIL-IPT-99-2CERN-TH-99-206oai:cds.cern.ch:3947101999-07-28
spellingShingle Particle Physics - Theory
Laine, M.
Shaposhnikov, Mikhail E.
An all-order discontinuity at the electroweak phase transition
title An all-order discontinuity at the electroweak phase transition
title_full An all-order discontinuity at the electroweak phase transition
title_fullStr An all-order discontinuity at the electroweak phase transition
title_full_unstemmed An all-order discontinuity at the electroweak phase transition
title_short An all-order discontinuity at the electroweak phase transition
title_sort all-order discontinuity at the electroweak phase transition
topic Particle Physics - Theory
url https://dx.doi.org/10.1016/S0370-2693(99)01014-X
http://cds.cern.ch/record/394710
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