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Pure Gravities via Color-Kinematics Duality for Fundamental Matter

We give a prescription for the computation of loop-level scattering amplitudes in pure Einstein gravity, and four-dimensional pure supergravities, using the color-kinematics duality. Amplitudes are constructed using double copies of pure (super-)Yang-Mills parts and additional contributions from dou...

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Detalles Bibliográficos
Autores principales: Johansson, Henrik, Ochirov, Alexander
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP11(2015)046
http://cds.cern.ch/record/1744175
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author Johansson, Henrik
Ochirov, Alexander
author_facet Johansson, Henrik
Ochirov, Alexander
author_sort Johansson, Henrik
collection CERN
description We give a prescription for the computation of loop-level scattering amplitudes in pure Einstein gravity, and four-dimensional pure supergravities, using the color-kinematics duality. Amplitudes are constructed using double copies of pure (super-)Yang-Mills parts and additional contributions from double copies of fundamental matter, which are treated as ghosts. The opposite-statistics states cancel the unwanted dilaton and axion in the bosonic theory, as well as the extra matter supermultiplets in supergravities. As a spinoff, we obtain a prescription for obtaining amplitudes in supergravities with arbitrary non-self-interacting matter. As a prerequisite, we extend the color-kinematics duality from the adjoint to the fundamental representation of the gauge group. We explain the numerator relations that the fundamental kinematic Lie algebra should satisfy. We give nontrivial evidence supporting our construction using explicit tree and loop amplitudes, as well as more general arguments.
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institution Organización Europea para la Investigación Nuclear
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spelling cern-17441752023-10-04T08:55:43Zdoi:10.1007/JHEP11(2015)046http://cds.cern.ch/record/1744175engJohansson, HenrikOchirov, AlexanderPure Gravities via Color-Kinematics Duality for Fundamental MatterParticle Physics - TheoryWe give a prescription for the computation of loop-level scattering amplitudes in pure Einstein gravity, and four-dimensional pure supergravities, using the color-kinematics duality. Amplitudes are constructed using double copies of pure (super-)Yang-Mills parts and additional contributions from double copies of fundamental matter, which are treated as ghosts. The opposite-statistics states cancel the unwanted dilaton and axion in the bosonic theory, as well as the extra matter supermultiplets in supergravities. As a spinoff, we obtain a prescription for obtaining amplitudes in supergravities with arbitrary non-self-interacting matter. As a prerequisite, we extend the color-kinematics duality from the adjoint to the fundamental representation of the gauge group. We explain the numerator relations that the fundamental kinematic Lie algebra should satisfy. We give nontrivial evidence supporting our construction using explicit tree and loop amplitudes, as well as more general arguments.We give a prescription for the computation of loop-level scattering amplitudes in pure Einstein gravity, and four-dimensional pure supergravities, using the color-kinematics duality. Amplitudes are constructed using double copies of pure (super-)Yang-Mills parts and additional contributions from double copies of fundamental matter, which are treated as ghosts. The opposite-statistics states cancel the unwanted dilaton and axion in the bosonic theory, as well as the extra matter supermultiplets in the supergravity theories. As a spinoff, we obtain a prescription for obtaining amplitudes in supergravities with arbitrary non-self-interacting matter. As a prerequisite, we extend the color-kinematics duality from the adjoint to the fundamental representation of the gauge group. We explain the numerator relations that the fundamental kinematic Lie algebra should satisfy. We give nontrivial evidence supporting our construction using explicit tree and loop amplitudes, as well as more general arguments.We give a prescription for the computation of loop-level scattering amplitudes in pure Einstein gravity, and four-dimensional pure supergravities, using the color-kinematics duality. Amplitudes are constructed using double copies of pure (super-)Yang-Mills parts and additional contributions from double copies of fundamental matter, which are treated as ghosts. The opposite-statistics states cancel the unwanted dilaton and axion in the bosonic theory, as well as the extra matter supermultiplets in supergravities. As a spinoff, we obtain a prescription for obtaining amplitudes in supergravities with arbitrary non-self-interacting matter. As a prerequisite, we extend the color-kinematics duality from the adjoint to the fundamental representation of the gauge group. We explain the numerator relations that the fundamental kinematic Lie algebra should satisfy. We give nontrivial evidence supporting our construction using explicit tree and loop amplitudes, as well as more general arguments.arXiv:1407.4772CERN-PH-TH-2014-125IPHT-T14-090CERN-PH-TH-2014-125IPHT-T14-090oai:cds.cern.ch:17441752014-07-17
spellingShingle Particle Physics - Theory
Johansson, Henrik
Ochirov, Alexander
Pure Gravities via Color-Kinematics Duality for Fundamental Matter
title Pure Gravities via Color-Kinematics Duality for Fundamental Matter
title_full Pure Gravities via Color-Kinematics Duality for Fundamental Matter
title_fullStr Pure Gravities via Color-Kinematics Duality for Fundamental Matter
title_full_unstemmed Pure Gravities via Color-Kinematics Duality for Fundamental Matter
title_short Pure Gravities via Color-Kinematics Duality for Fundamental Matter
title_sort pure gravities via color-kinematics duality for fundamental matter
topic Particle Physics - Theory
url https://dx.doi.org/10.1007/JHEP11(2015)046
http://cds.cern.ch/record/1744175
work_keys_str_mv AT johanssonhenrik puregravitiesviacolorkinematicsdualityforfundamentalmatter
AT ochirovalexander puregravitiesviacolorkinematicsdualityforfundamentalmatter