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Nonperturbative Mellin Amplitudes: Existence, Properties, Applications
We argue that nonperturbative CFT correlation functions admit a Mellin amplitude representation. Perturbative Mellin representation readily follows. We discuss the main properties of nonperturbative CFT Mellin amplitudes: subtractions, analyticity, unitarity, Polyakov conditions and polynomial bound...
Autores principales: | , , |
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Lenguaje: | eng |
Publicado: |
2019
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1007/JHEP08(2020)031 http://cds.cern.ch/record/2707099 |
_version_ | 1780964918793601024 |
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author | Penedones, Joao Silva, Joao A. Zhiboedov, Alexander |
author_facet | Penedones, Joao Silva, Joao A. Zhiboedov, Alexander |
author_sort | Penedones, Joao |
collection | CERN |
description | We argue that nonperturbative CFT correlation functions admit a Mellin amplitude representation. Perturbative Mellin representation readily follows. We discuss the main properties of nonperturbative CFT Mellin amplitudes: subtractions, analyticity, unitarity, Polyakov conditions and polynomial boundedness at infinity. Mellin amplitudes are particularly simple for large N CFTs and 2D rational CFTs. We discuss these examples to illustrate our general discussion. We consider subtracted dispersion relations for Mellin amplitudes and use them to derive bootstrap bounds on CFTs. We combine crossing, dispersion relations and Polyakov conditions to write down a set of extremal functionals that act on the OPE data. We check these functionals using the known 3d Ising model OPE data and other known bootstrap constraints. We then apply them to holographic theories. |
id | cern-2707099 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2019 |
record_format | invenio |
spelling | cern-27070992023-10-04T05:59:08Zdoi:10.1007/JHEP08(2020)031http://cds.cern.ch/record/2707099engPenedones, JoaoSilva, Joao A.Zhiboedov, AlexanderNonperturbative Mellin Amplitudes: Existence, Properties, Applicationshep-thParticle Physics - TheoryWe argue that nonperturbative CFT correlation functions admit a Mellin amplitude representation. Perturbative Mellin representation readily follows. We discuss the main properties of nonperturbative CFT Mellin amplitudes: subtractions, analyticity, unitarity, Polyakov conditions and polynomial boundedness at infinity. Mellin amplitudes are particularly simple for large N CFTs and 2D rational CFTs. We discuss these examples to illustrate our general discussion. We consider subtracted dispersion relations for Mellin amplitudes and use them to derive bootstrap bounds on CFTs. We combine crossing, dispersion relations and Polyakov conditions to write down a set of extremal functionals that act on the OPE data. We check these functionals using the known 3d Ising model OPE data and other known bootstrap constraints. We then apply them to holographic theories.arXiv:1912.11100CERN-TH-2019-230oai:cds.cern.ch:27070992019-12-23 |
spellingShingle | hep-th Particle Physics - Theory Penedones, Joao Silva, Joao A. Zhiboedov, Alexander Nonperturbative Mellin Amplitudes: Existence, Properties, Applications |
title | Nonperturbative Mellin Amplitudes: Existence, Properties, Applications |
title_full | Nonperturbative Mellin Amplitudes: Existence, Properties, Applications |
title_fullStr | Nonperturbative Mellin Amplitudes: Existence, Properties, Applications |
title_full_unstemmed | Nonperturbative Mellin Amplitudes: Existence, Properties, Applications |
title_short | Nonperturbative Mellin Amplitudes: Existence, Properties, Applications |
title_sort | nonperturbative mellin amplitudes: existence, properties, applications |
topic | hep-th Particle Physics - Theory |
url | https://dx.doi.org/10.1007/JHEP08(2020)031 http://cds.cern.ch/record/2707099 |
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