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Towards 4-loop NSPT result for a 3-dimensional condensate-contribution to hot QCD pressure

Thanks to dimensional reduction, the contributions to the hot QCD pressure coming from so-called soft modes can be studied via an effective three-dimensional theory named Electrostatic QCD (spatial Yang-Mills fields plus an adjoint Higgs scalar). The poor convergence of the perturbative series withi...

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Autores principales: Torrero, C., Laine, M., Schroder, Y., Di Renzo, F., Miccio, V.
Lenguaje:eng
Publicado: 2007
Materias:
Acceso en línea:https://dx.doi.org/10.22323/1.042.0231
http://cds.cern.ch/record/1067967
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author Torrero, C.
Laine, M.
Schroder, Y.
Di Renzo, F.
Miccio, V.
author_facet Torrero, C.
Laine, M.
Schroder, Y.
Di Renzo, F.
Miccio, V.
author_sort Torrero, C.
collection CERN
description Thanks to dimensional reduction, the contributions to the hot QCD pressure coming from so-called soft modes can be studied via an effective three-dimensional theory named Electrostatic QCD (spatial Yang-Mills fields plus an adjoint Higgs scalar). The poor convergence of the perturbative series within EQCD suggests to perform lattice measurements of some of the associated gluon condensates. These turn out, however, to be plagued by large discretization artifacts. We discuss how Numerical Stochastic Perturbation Theory can be exploited to determine the full lattice spacing dependence of one of these condensates up to 4-loop order, and sharpen our tools on a concrete 2-loop example.
id cern-1067967
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2007
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spelling cern-10679672023-03-12T04:33:36Zdoi:10.22323/1.042.0231http://cds.cern.ch/record/1067967engTorrero, C.Laine, M.Schroder, Y.Di Renzo, F.Miccio, V.Towards 4-loop NSPT result for a 3-dimensional condensate-contribution to hot QCD pressureParticle Physics - LatticeThanks to dimensional reduction, the contributions to the hot QCD pressure coming from so-called soft modes can be studied via an effective three-dimensional theory named Electrostatic QCD (spatial Yang-Mills fields plus an adjoint Higgs scalar). The poor convergence of the perturbative series within EQCD suggests to perform lattice measurements of some of the associated gluon condensates. These turn out, however, to be plagued by large discretization artifacts. We discuss how Numerical Stochastic Perturbation Theory can be exploited to determine the full lattice spacing dependence of one of these condensates up to 4-loop order, and sharpen our tools on a concrete 2-loop example.Thanks to dimensional reduction, the contributions to the hot QCD pressure coming from so-called soft modes can be studied via an effective three-dimensional theory named Electrostatic QCD (spatial Yang-Mills fields plus an adjoint Higgs scalar). The poor convergence of the perturbative series within EQCD suggests to perform lattice measurements of some of the associated gluon condensates. These turn out, however, to be plagued by large discretization artifacts. We discuss how Numerical Stochastic Perturbation Theory can be exploited to determine the full lattice spacing dependence of one of these condensates up to 4-loop order, and sharpen our tools on a concrete 2-loop example.arXiv:0711.1176oai:cds.cern.ch:10679672007-11-09
spellingShingle Particle Physics - Lattice
Torrero, C.
Laine, M.
Schroder, Y.
Di Renzo, F.
Miccio, V.
Towards 4-loop NSPT result for a 3-dimensional condensate-contribution to hot QCD pressure
title Towards 4-loop NSPT result for a 3-dimensional condensate-contribution to hot QCD pressure
title_full Towards 4-loop NSPT result for a 3-dimensional condensate-contribution to hot QCD pressure
title_fullStr Towards 4-loop NSPT result for a 3-dimensional condensate-contribution to hot QCD pressure
title_full_unstemmed Towards 4-loop NSPT result for a 3-dimensional condensate-contribution to hot QCD pressure
title_short Towards 4-loop NSPT result for a 3-dimensional condensate-contribution to hot QCD pressure
title_sort towards 4-loop nspt result for a 3-dimensional condensate-contribution to hot qcd pressure
topic Particle Physics - Lattice
url https://dx.doi.org/10.22323/1.042.0231
http://cds.cern.ch/record/1067967
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