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One-loop amplitudes on the Riemann sphere

The scattering equations provide a powerful framework for the study of scattering amplitudes in a variety of theories. Their derivation from ambitwistor string theory led to proposals for formulae at one loop on a torus for 10 dimensional supergravity, and we recently showed how these can be reduced...

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Detalles Bibliográficos
Autores principales: Geyer, Yvonne, Mason, Lionel, Monteiro, Ricardo, Tourkine, Piotr
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP03(2016)114
http://cds.cern.ch/record/2104157
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author Geyer, Yvonne
Mason, Lionel
Monteiro, Ricardo
Tourkine, Piotr
author_facet Geyer, Yvonne
Mason, Lionel
Monteiro, Ricardo
Tourkine, Piotr
author_sort Geyer, Yvonne
collection CERN
description The scattering equations provide a powerful framework for the study of scattering amplitudes in a variety of theories. Their derivation from ambitwistor string theory led to proposals for formulae at one loop on a torus for 10 dimensional supergravity, and we recently showed how these can be reduced to the Riemann sphere and checked in simple cases. We also proposed analogous formulae for other theories including maximal super-Yang-Mills theory and supergravity in other dimensions at one loop. We give further details of these results and extend them in two directions. Firstly, we propose new formulae for the one-loop integrands of Yang-Mills theory and gravity in the absence of supersymmetry. These follow from the identification of the states running in the loop as expressed in the ambitwistor-string correlator. Secondly, we give a systematic proof of the non-supersymmetric formulae using the worldsheet factorisation properties of the nodal Riemann sphere underlying the scattering equations at one loop. Our formulae have the same decomposition under the recently introduced Q-cuts as one-loop integrands and hence give the correct amplitudes.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
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spelling cern-21041572022-08-10T12:42:02Zdoi:10.1007/JHEP03(2016)114http://cds.cern.ch/record/2104157engGeyer, YvonneMason, LionelMonteiro, RicardoTourkine, PiotrOne-loop amplitudes on the Riemann sphereParticle Physics - TheoryThe scattering equations provide a powerful framework for the study of scattering amplitudes in a variety of theories. Their derivation from ambitwistor string theory led to proposals for formulae at one loop on a torus for 10 dimensional supergravity, and we recently showed how these can be reduced to the Riemann sphere and checked in simple cases. We also proposed analogous formulae for other theories including maximal super-Yang-Mills theory and supergravity in other dimensions at one loop. We give further details of these results and extend them in two directions. Firstly, we propose new formulae for the one-loop integrands of Yang-Mills theory and gravity in the absence of supersymmetry. These follow from the identification of the states running in the loop as expressed in the ambitwistor-string correlator. Secondly, we give a systematic proof of the non-supersymmetric formulae using the worldsheet factorisation properties of the nodal Riemann sphere underlying the scattering equations at one loop. Our formulae have the same decomposition under the recently introduced Q-cuts as one-loop integrands and hence give the correct amplitudes.The scattering equations provide a powerful framework for the study of scattering amplitudes in a variety of theories. Their derivation from ambitwistor string theory led to proposals for formulae at one loop on a torus for 10 dimensional supergravity, and we recently showed how these can be reduced to the Riemann sphere and checked in simple cases. We also proposed analogous formulae for other theories including maximal super-Yang-Mills theory and supergravity in other dimensions at one loop. We give further details of these results and extend them in two directions. Firstly, we propose new formulae for the one-loop integrands of Yang-Mills theory and gravity in the absence of supersymmetry. These follow from the identification of the states running in the loop as expressed in the ambitwistor-string correlator. Secondly, we give a systematic proof of the non-supersymmetric formulae using the worldsheet factorisation properties of the nodal Riemann sphere underlying the scattering equations at one loop. Our formulae have the same decomposition under the recently introduced Q-cuts as one-loop integrands and hence give the correct amplitudes.arXiv:1511.06315CERN-PH-TH-2015-267DAMTP-2015-76CERN-PH-TH-2015-267DAMTP-2015-76oai:cds.cern.ch:21041572015-11-19
spellingShingle Particle Physics - Theory
Geyer, Yvonne
Mason, Lionel
Monteiro, Ricardo
Tourkine, Piotr
One-loop amplitudes on the Riemann sphere
title One-loop amplitudes on the Riemann sphere
title_full One-loop amplitudes on the Riemann sphere
title_fullStr One-loop amplitudes on the Riemann sphere
title_full_unstemmed One-loop amplitudes on the Riemann sphere
title_short One-loop amplitudes on the Riemann sphere
title_sort one-loop amplitudes on the riemann sphere
topic Particle Physics - Theory
url https://dx.doi.org/10.1007/JHEP03(2016)114
http://cds.cern.ch/record/2104157
work_keys_str_mv AT geyeryvonne oneloopamplitudesontheriemannsphere
AT masonlionel oneloopamplitudesontheriemannsphere
AT monteiroricardo oneloopamplitudesontheriemannsphere
AT tourkinepiotr oneloopamplitudesontheriemannsphere