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k-String tensions and their large-N dependence

We consider whether the 1/N corrections to k-string tensions must begin at order 1/N^2, as in the Sine Law, or whether odd powers of 1/N, as in Casimir Scaling, are also acceptable. The issue is important because different models of confinement differ in their predictions for the representation-depe...

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Detalles Bibliográficos
Autores principales: Greensite, J., Lucini, B., Patella, A.
Lenguaje:eng
Publicado: 2011
Materias:
Acceso en línea:https://dx.doi.org/10.22323/1.139.0267
http://cds.cern.ch/record/1396110
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author Greensite, J.
Lucini, B.
Patella, A.
author_facet Greensite, J.
Lucini, B.
Patella, A.
author_sort Greensite, J.
collection CERN
description We consider whether the 1/N corrections to k-string tensions must begin at order 1/N^2, as in the Sine Law, or whether odd powers of 1/N, as in Casimir Scaling, are also acceptable. The issue is important because different models of confinement differ in their predictions for the representation-dependence of k-string tensions, and corrections involving odd powers of 1/N would seem to be ruled out by the large-N expansion. We show, however, that k-string tensions may, in fact, have leading 1/N corrections, and consistency with the large-N expansion, in the open string sector, is achieved by an exact pairwise cancellation among terms involving odd powers of 1/N in particular combinations of Wilson loops. It is shown how these cancellations come about in a concrete example, namely, strong coupling lattice gauge theory with the heat-kernel action, in which k-string tensions follow the Casimir scaling rule.
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spelling cern-13961102023-03-21T05:07:32Zdoi:10.22323/1.139.0267http://cds.cern.ch/record/1396110engGreensite, J.Lucini, B.Patella, A.k-String tensions and their large-N dependenceParticle Physics - LatticeWe consider whether the 1/N corrections to k-string tensions must begin at order 1/N^2, as in the Sine Law, or whether odd powers of 1/N, as in Casimir Scaling, are also acceptable. The issue is important because different models of confinement differ in their predictions for the representation-dependence of k-string tensions, and corrections involving odd powers of 1/N would seem to be ruled out by the large-N expansion. We show, however, that k-string tensions may, in fact, have leading 1/N corrections, and consistency with the large-N expansion, in the open string sector, is achieved by an exact pairwise cancellation among terms involving odd powers of 1/N in particular combinations of Wilson loops. It is shown how these cancellations come about in a concrete example, namely, strong coupling lattice gauge theory with the heat-kernel action, in which k-string tensions follow the Casimir scaling rule.We consider whether the 1/N corrections to k-string tensions must begin at order 1/N^2, as in the Sine Law, or whether odd powers of 1/N, as in Casimir Scaling, are also acceptable. The issue is important because different models of confinement differ in their predictions for the representation-dependence of k-string tensions, and corrections involving odd powers of 1/N would seem to be ruled out by the large-N expansion. We show, however, that k-string tensions may, in fact, have leading 1/N corrections, and consistency with the large-N expansion, in the open string sector, is achieved by an exact pairwise cancellation among terms involving odd powers of 1/N in particular combinations of Wilson loops. It is shown how these cancellations come about in a concrete example, namely, strong coupling lattice gauge theory with the heat-kernel action, in which k-string tensions follow the Casimir scaling rule.arXiv:1111.0901CERN-PH-TH-2011-263CERN-PH-TH-2011-263oai:cds.cern.ch:13961102011-11-04
spellingShingle Particle Physics - Lattice
Greensite, J.
Lucini, B.
Patella, A.
k-String tensions and their large-N dependence
title k-String tensions and their large-N dependence
title_full k-String tensions and their large-N dependence
title_fullStr k-String tensions and their large-N dependence
title_full_unstemmed k-String tensions and their large-N dependence
title_short k-String tensions and their large-N dependence
title_sort k-string tensions and their large-n dependence
topic Particle Physics - Lattice
url https://dx.doi.org/10.22323/1.139.0267
http://cds.cern.ch/record/1396110
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