Mini-twistors and the Cotton double copy

被引:0
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作者
Mariana Carrillo González
William T. Emond
Nathan Moynihan
Justinas Rumbutis
Chris D. White
机构
[1] Imperial College,Theoretical Physics, Blackett Laboratory
[2] CEICO,Higgs Centre for Theoretical Physics, School of Physics and Astronomy
[3] Institute of Physics of the Czech Academy of Sciences,Department of Physics and Astronomy
[4] The University of Edinburgh,Department of Physics and Center for Theoretical Physics
[5] Queen Mary University of London,undefined
[6] National Taiwan University,undefined
来源
Journal of High Energy Physics | / 2023卷
关键词
Chern-Simons Theories; Classical Theories of Gravity; Scattering Amplitudes; Field Theories in Lower Dimensions;
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摘要
The double copy relates quantities in gauge, gravity and related theories. A well-known procedure for relating exact classical solutions is the Weyl double copy in four spacetime dimensions, and a three-dimensional analogue of this — the Cotton double copy — has recently been found for topologically massive gauge theory and gravity. In this paper, we use twistor methods to provide a derivation of the position-space Cotton double copy, where this is seen to arise from combining appropriate data in so-called minitwistor space. Our methods rely on a massive generalisation of the Penrose transform linking spacetime fields with cohomology classes in minitwistor space. We identify the relevant transform from the twistor literature, but also show that it naturally arises from considering scattering amplitudes in momentum space. We show that the Cotton double copy in position space is only valid for type N solutions, but that a simple twistor space double copy is possible for non-type N solutions, where we use anyons to illustrate our arguments.
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