Descendants in celestial CFT and emergent multi-collinear factorization

Abstract Multi-collinear factorization limits provide a window to study how locality and unitarity of scattering amplitudes can emerge dynamically from celestial CFT, the conjectured holographic dual to gauge and gravitational theories in flat space. To this end, we first use asymptotic symmetries t...

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Published in:Journal of High Energy Physics
Main Authors: Stephen Ebert, Atul Sharma, Diandian Wang
Format: Article
Language:English
Published: SpringerOpen 2021-03-01
Subjects:
Online Access:https://doi.org/10.1007/JHEP03(2021)030
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author Stephen Ebert
Atul Sharma
Diandian Wang
author_facet Stephen Ebert
Atul Sharma
Diandian Wang
author_sort Stephen Ebert
collection DOAJ
container_title Journal of High Energy Physics
description Abstract Multi-collinear factorization limits provide a window to study how locality and unitarity of scattering amplitudes can emerge dynamically from celestial CFT, the conjectured holographic dual to gauge and gravitational theories in flat space. To this end, we first use asymptotic symmetries to commence a systematic study of conformal and Kac-Moody descendants in the OPE of celestial gluons. Recursive application of these OPEs then equips us with a novel holographic method of computing the multi-collinear limits of gluon amplitudes. We perform this computation for some of the simplest helicity assignments of the collinear particles. The prediction from the OPE matches with Mellin transforms of the expressions in the literature to all orders in conformal descendants. In a similar vein, we conclude by studying multi-collinear limits of graviton amplitudes in the leading approximation of sequential double-collinear limits, again finding a consistency check against the leading order OPE of celestial gravitons.
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spelling doaj-art-e2b0b5f9e66e49628cbdeea94e959bd72025-08-19T19:45:09ZengSpringerOpenJournal of High Energy Physics1029-84792021-03-012021312710.1007/JHEP03(2021)030Descendants in celestial CFT and emergent multi-collinear factorizationStephen Ebert0Atul Sharma1Diandian Wang2Mani L. Bhaumik Institute for Theoretical Physics, University of CaliforniaThe Mathematical Institute, University of OxfordDepartment of Physics, University of CaliforniaAbstract Multi-collinear factorization limits provide a window to study how locality and unitarity of scattering amplitudes can emerge dynamically from celestial CFT, the conjectured holographic dual to gauge and gravitational theories in flat space. To this end, we first use asymptotic symmetries to commence a systematic study of conformal and Kac-Moody descendants in the OPE of celestial gluons. Recursive application of these OPEs then equips us with a novel holographic method of computing the multi-collinear limits of gluon amplitudes. We perform this computation for some of the simplest helicity assignments of the collinear particles. The prediction from the OPE matches with Mellin transforms of the expressions in the literature to all orders in conformal descendants. In a similar vein, we conclude by studying multi-collinear limits of graviton amplitudes in the leading approximation of sequential double-collinear limits, again finding a consistency check against the leading order OPE of celestial gravitons.https://doi.org/10.1007/JHEP03(2021)030Scattering AmplitudesConformal Field TheoryGauge-gravity correspondencePerturbative QCD
spellingShingle Stephen Ebert
Atul Sharma
Diandian Wang
Descendants in celestial CFT and emergent multi-collinear factorization
Scattering Amplitudes
Conformal Field Theory
Gauge-gravity correspondence
Perturbative QCD
title Descendants in celestial CFT and emergent multi-collinear factorization
title_full Descendants in celestial CFT and emergent multi-collinear factorization
title_fullStr Descendants in celestial CFT and emergent multi-collinear factorization
title_full_unstemmed Descendants in celestial CFT and emergent multi-collinear factorization
title_short Descendants in celestial CFT and emergent multi-collinear factorization
title_sort descendants in celestial cft and emergent multi collinear factorization
topic Scattering Amplitudes
Conformal Field Theory
Gauge-gravity correspondence
Perturbative QCD
url https://doi.org/10.1007/JHEP03(2021)030
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