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Large N QCD from rotating branes

We study large N SU(N) Yang-Mills theory in three and four dimensions using a one-parameter family of supergravity models which originate from non-extremal rotating D-branes. We show explicitly that varying this "angular momentum" parameter decouples the Kaluza-Klein modes associated with...

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Detalles Bibliográficos
Autores principales: Csaki, Csaba, Oz, Yaron, Russo, Jorge, Terning, John
Lenguaje:eng
Publicado: 1998
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevD.59.065012
http://cds.cern.ch/record/369062
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author Csaki, Csaba
Oz, Yaron
Russo, Jorge
Terning, John
author_facet Csaki, Csaba
Oz, Yaron
Russo, Jorge
Terning, John
author_sort Csaki, Csaba
collection CERN
description We study large N SU(N) Yang-Mills theory in three and four dimensions using a one-parameter family of supergravity models which originate from non-extremal rotating D-branes. We show explicitly that varying this "angular momentum" parameter decouples the Kaluza-Klein modes associated with the compact D-brane coordinate, while the mass ratios for ordinary glueballs are quite stable against this variation, and are in surprisingly good agreement with the latest lattice results. We also compute the topological susceptibility and the gluon condensate as a function of the "angular momentum" parameter.
id cern-369062
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1998
record_format invenio
spelling cern-3690622021-10-08T02:31:10Zdoi:10.1103/PhysRevD.59.065012http://cds.cern.ch/record/369062engCsaki, CsabaOz, YaronRusso, JorgeTerning, JohnLarge N QCD from rotating branesParticle Physics - TheoryWe study large N SU(N) Yang-Mills theory in three and four dimensions using a one-parameter family of supergravity models which originate from non-extremal rotating D-branes. We show explicitly that varying this "angular momentum" parameter decouples the Kaluza-Klein modes associated with the compact D-brane coordinate, while the mass ratios for ordinary glueballs are quite stable against this variation, and are in surprisingly good agreement with the latest lattice results. We also compute the topological susceptibility and the gluon condensate as a function of the "angular momentum" parameter.We study large N SU(N) Yang-Mills theory in three and four dimensions using a one-parameter family of supergravity models which originate from non-extremal rotating D-branes. We show explicitly that varying this "angular momentum" parameter decouples the Kaluza-Klein modes associated with the compact D-brane coordinate, while the mass ratios for ordinary glueballs are quite stable against this variation, and are in good agreement with the latest lattice results. We also compute the topological susceptibility and the gluon condensate as a function of the "angular momentum" parameter.hep-th/9810186UCB-PTH-98-52LBNL-42424LBL-42424CERN-TH-98-338IMPERIAL-TP-98-99-5CERN-TH-98-338IMPERIAL-TP-98-99-5LBNL-42424UCB-PTH-98-52oai:cds.cern.ch:3690621998-10-26
spellingShingle Particle Physics - Theory
Csaki, Csaba
Oz, Yaron
Russo, Jorge
Terning, John
Large N QCD from rotating branes
title Large N QCD from rotating branes
title_full Large N QCD from rotating branes
title_fullStr Large N QCD from rotating branes
title_full_unstemmed Large N QCD from rotating branes
title_short Large N QCD from rotating branes
title_sort large n qcd from rotating branes
topic Particle Physics - Theory
url https://dx.doi.org/10.1103/PhysRevD.59.065012
http://cds.cern.ch/record/369062
work_keys_str_mv AT csakicsaba largenqcdfromrotatingbranes
AT ozyaron largenqcdfromrotatingbranes
AT russojorge largenqcdfromrotatingbranes
AT terningjohn largenqcdfromrotatingbranes