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Bootstrapping correlation functions in N=4 SYM

We describe a new approach to computing the chiral part of correlation functions of stress-tensor supermultiplets in N=4 SYM that relies on symmetries, analytic properties and the structure of the OPE only. We demonstrate that the correlation functions are given by a linear combination of chiral N=4...

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Autores principales: Chicherin, Dmitry, Doobary, Reza, Eden, Burkhard, Heslop, Paul, Korchemsky, Gregory P., Sokatchev, Emery
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP03(2016)031
http://cds.cern.ch/record/2028725
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author Chicherin, Dmitry
Doobary, Reza
Eden, Burkhard
Heslop, Paul
Korchemsky, Gregory P.
Sokatchev, Emery
author_facet Chicherin, Dmitry
Doobary, Reza
Eden, Burkhard
Heslop, Paul
Korchemsky, Gregory P.
Sokatchev, Emery
author_sort Chicherin, Dmitry
collection CERN
description We describe a new approach to computing the chiral part of correlation functions of stress-tensor supermultiplets in N=4 SYM that relies on symmetries, analytic properties and the structure of the OPE only. We demonstrate that the correlation functions are given by a linear combination of chiral N=4 superconformal invariants accompanied by coefficient functions depending on the space-time coordinates only. We present the explicit construction of these invariants and show that the six-point correlation function is fixed in the Born approximation up to four constant coefficients by its symmetries. In addition, the known asymptotic structure of the correlation function in the light-like limit fixes unambiguously these coefficients up to an overall normalization. We demonstrate that the same approach can be applied to obtain a representation for the six-point NMHV amplitude that is free from any auxiliary gauge fixing parameters, does not involve spurious poles and manifests half of the dual superconformal symmetry.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
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spelling cern-20287252022-08-10T12:36:07Zdoi:10.1007/JHEP03(2016)031http://cds.cern.ch/record/2028725engChicherin, DmitryDoobary, RezaEden, BurkhardHeslop, PaulKorchemsky, Gregory P.Sokatchev, EmeryBootstrapping correlation functions in N=4 SYMParticle Physics - TheoryWe describe a new approach to computing the chiral part of correlation functions of stress-tensor supermultiplets in N=4 SYM that relies on symmetries, analytic properties and the structure of the OPE only. We demonstrate that the correlation functions are given by a linear combination of chiral N=4 superconformal invariants accompanied by coefficient functions depending on the space-time coordinates only. We present the explicit construction of these invariants and show that the six-point correlation function is fixed in the Born approximation up to four constant coefficients by its symmetries. In addition, the known asymptotic structure of the correlation function in the light-like limit fixes unambiguously these coefficients up to an overall normalization. We demonstrate that the same approach can be applied to obtain a representation for the six-point NMHV amplitude that is free from any auxiliary gauge fixing parameters, does not involve spurious poles and manifests half of the dual superconformal symmetry.We describe a new approach to computing the chiral part of correlation functions of stress-tensor supermultiplets in $ \mathcal{N}=4 $ SYM that relies on symmetries, analytic properties and the structure of the OPE only. We demonstrate that the correlation functions are given by a linear combination of chiral $ \mathcal{N}=4 $ superconformal invariants accompanied by coefficient functions depending on the space-time coordinates only. We present the explicit construction of these invariants and show that the six-point correlation function is fixed in the Born approximation up to four constant coefficients by its symmetries. In addition, the known asymptotic structure of the correlation function in the light-like limit fixes unambiguously these coefficients up to an overall normalization. We demonstrate that the same approach can be applied to obtain a representation for the six-point NMHV amplitude that is free from any auxiliary gauge fixing parameters, does not involve spurious poles and manifests half of the dual superconformal symmetry.We describe a new approach to computing the chiral part of correlation functions of stress-tensor supermultiplets in N=4 SYM that relies on symmetries, analytic properties and the structure of the OPE only. We demonstrate that the correlation functions are given by a linear combination of chiral N=4 superconformal invariants accompanied by coefficient functions depending on the space-time coordinates only. We present the explicit construction of these invariants and show that the six-point correlation function is fixed in the Born approximation up to four constant coefficients by its symmetries. In addition, the known asymptotic structure of the correlation function in the light-like limit fixes unambiguously these coefficients up to an overall normalization. We demonstrate that the same approach can be applied to obtain a representation for the six-point NMHV amplitude that is free from any auxiliary gauge fixing parameters, does not involve spurious poles and manifests half of the dual superconformal symmetry.arXiv:1506.04983CERN-PH-TH-2015-135DCPT-15-35HU-EP-15-29HU-MATH-2015-09LAPTH-032-15IPHT-T15-101CERN-PH-TH-2015-135DCPT-15-35HU-EP-15-29HU-MATH 2015-09IPHT-T15-101LAPTH-032-15oai:cds.cern.ch:20287252015-06-16
spellingShingle Particle Physics - Theory
Chicherin, Dmitry
Doobary, Reza
Eden, Burkhard
Heslop, Paul
Korchemsky, Gregory P.
Sokatchev, Emery
Bootstrapping correlation functions in N=4 SYM
title Bootstrapping correlation functions in N=4 SYM
title_full Bootstrapping correlation functions in N=4 SYM
title_fullStr Bootstrapping correlation functions in N=4 SYM
title_full_unstemmed Bootstrapping correlation functions in N=4 SYM
title_short Bootstrapping correlation functions in N=4 SYM
title_sort bootstrapping correlation functions in n=4 sym
topic Particle Physics - Theory
url https://dx.doi.org/10.1007/JHEP03(2016)031
http://cds.cern.ch/record/2028725
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AT edenburkhard bootstrappingcorrelationfunctionsinn4sym
AT hesloppaul bootstrappingcorrelationfunctionsinn4sym
AT korchemskygregoryp bootstrappingcorrelationfunctionsinn4sym
AT sokatchevemery bootstrappingcorrelationfunctionsinn4sym