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The four-loop remainder function and multi-Regge behavior at NNLLA in planar N=4 super-Yang-Mills theory

We present the four-loop remainder function for six-gluon scattering with maximal helicity violation in planar N=4 super-Yang-Mills theory, as an analytic function of three dual-conformal cross ratios. The function is constructed entirely from its analytic properties, without ever inspecting any mul...

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Autores principales: Dixon, Lance J., Drummond, James M., Duhr, Claude, Pennington, Jeffrey
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP06(2014)116
http://cds.cern.ch/record/1648373
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author Dixon, Lance J.
Drummond, James M.
Duhr, Claude
Pennington, Jeffrey
author_facet Dixon, Lance J.
Drummond, James M.
Duhr, Claude
Pennington, Jeffrey
author_sort Dixon, Lance J.
collection CERN
description We present the four-loop remainder function for six-gluon scattering with maximal helicity violation in planar N=4 super-Yang-Mills theory, as an analytic function of three dual-conformal cross ratios. The function is constructed entirely from its analytic properties, without ever inspecting any multi-loop integrand. We employ the same approach used at three loops, writing an ansatz in terms of hexagon functions, and fixing coefficients in the ansatz using the multi-Regge limit and the operator product expansion in the near-collinear limit. We express the result in terms of multiple polylogarithms, and in terms of the coproduct for the associated Hopf algebra. From the remainder function, we extract the BFKL eigenvalue at next-to-next-to-leading logarithmic accuracy (NNLLA), and the impact factor at NNNLLA. We plot the remainder function along various lines and on one surface, studying ratios of successive loop orders. As seen previously through three loops, these ratios are surprisingly constant over large regions in the space of cross ratios, and they are not far from the value expected at asymptotically large orders of perturbation theory.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2014
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spelling cern-16483732023-10-04T08:52:16Zdoi:10.1007/JHEP06(2014)116http://cds.cern.ch/record/1648373engDixon, Lance J.Drummond, James M.Duhr, ClaudePennington, JeffreyThe four-loop remainder function and multi-Regge behavior at NNLLA in planar N=4 super-Yang-Mills theoryParticle Physics - TheoryWe present the four-loop remainder function for six-gluon scattering with maximal helicity violation in planar N=4 super-Yang-Mills theory, as an analytic function of three dual-conformal cross ratios. The function is constructed entirely from its analytic properties, without ever inspecting any multi-loop integrand. We employ the same approach used at three loops, writing an ansatz in terms of hexagon functions, and fixing coefficients in the ansatz using the multi-Regge limit and the operator product expansion in the near-collinear limit. We express the result in terms of multiple polylogarithms, and in terms of the coproduct for the associated Hopf algebra. From the remainder function, we extract the BFKL eigenvalue at next-to-next-to-leading logarithmic accuracy (NNLLA), and the impact factor at NNNLLA. We plot the remainder function along various lines and on one surface, studying ratios of successive loop orders. As seen previously through three loops, these ratios are surprisingly constant over large regions in the space of cross ratios, and they are not far from the value expected at asymptotically large orders of perturbation theory.We present the four-loop remainder function for six-gluon scattering with maximal helicity violation in planar = 4 super-Yang-Mills theory, as an analytic function of three dual-conformal cross ratios. The function is constructed entirely from its analytic properties, without ever inspecting any multi-loop integrand. We employ the same approach used at three loops, writing an ansatz in terms of hexagon functions, and fixing coefficients in the ansatz using the multi-Regge limit and the operator product expansion in the near-collinear limit. We express the result in terms of multiple polylogarithms, and in terms of the coproduct for the associated Hopf algebra. From the remainder function, we extract the BFKL eigenvalue at next-to-next-to-leading logarithmic accuracy (NNLLA), and the impact factor at N(3)LLA. We plot the remainder function along various lines and on one surface, studying ratios of successive loop orders. As seen previously through three loops, these ratios are surprisingly constant over large regions in the space of cross ratios, and they are not far from the value expected at asymptotically large orders of perturbation theory.We present the four-loop remainder function for six-gluon scattering with maximal helicity violation in planar N=4 super-Yang-Mills theory, as an analytic function of three dual-conformal cross ratios. The function is constructed entirely from its analytic properties, without ever inspecting any multi-loop integrand. We employ the same approach used at three loops, writing an ansatz in terms of hexagon functions, and fixing coefficients in the ansatz using the multi-Regge limit and the operator product expansion in the near-collinear limit. We express the result in terms of multiple polylogarithms, and in terms of the coproduct for the associated Hopf algebra. From the remainder function, we extract the BFKL eigenvalue at next-to-next-to-leading logarithmic accuracy (NNLLA), and the impact factor at NNNLLA. We plot the remainder function along various lines and on one surface, studying ratios of successive loop orders. As seen previously through three loops, these ratios are surprisingly constant over large regions in the space of cross ratios, and they are not far from the value expected at asymptotically large orders of perturbation theory.arXiv:1402.3300SLAC-PUB-15902CERN-PH-TH-2014-027IPPP-14-09DCPT-14-18LAPTH-010-14SLAC-PUB-15902CERN-PH-TH-2014-027IPPP-14-09DCPT-14-18LAPTH-010-14oai:cds.cern.ch:16483732014-02-13
spellingShingle Particle Physics - Theory
Dixon, Lance J.
Drummond, James M.
Duhr, Claude
Pennington, Jeffrey
The four-loop remainder function and multi-Regge behavior at NNLLA in planar N=4 super-Yang-Mills theory
title The four-loop remainder function and multi-Regge behavior at NNLLA in planar N=4 super-Yang-Mills theory
title_full The four-loop remainder function and multi-Regge behavior at NNLLA in planar N=4 super-Yang-Mills theory
title_fullStr The four-loop remainder function and multi-Regge behavior at NNLLA in planar N=4 super-Yang-Mills theory
title_full_unstemmed The four-loop remainder function and multi-Regge behavior at NNLLA in planar N=4 super-Yang-Mills theory
title_short The four-loop remainder function and multi-Regge behavior at NNLLA in planar N=4 super-Yang-Mills theory
title_sort four-loop remainder function and multi-regge behavior at nnlla in planar n=4 super-yang-mills theory
topic Particle Physics - Theory
url https://dx.doi.org/10.1007/JHEP06(2014)116
http://cds.cern.ch/record/1648373
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