Non-perturbative aspects of the self-dual double copy

被引:0
作者
Kymani Armstrong-Williams
Chris D. White
Sam Wikeley
机构
[1] Department of Physics and Astronomy,Centre for Theoretical Physics
[2] Queen Mary University of London,undefined
来源
Journal of High Energy Physics | / 2022卷
关键词
Scattering Amplitudes; Classical Theories of Gravity; Solitons Monopoles and Instantons;
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摘要
The double copy is by now a firmly-established correspondence between amplitudes and classical solutions in biadjoint scalar, gauge and gravity theories. To date, no strongly coupled examples of the double copy in four dimensions have been found, and previous attempts based on exact non-linear solutions of biadjoint theory in Lorentzian signature have failed. In this paper, we instead look for biadjoint solutions in Euclidean signature, which may be relatable to Yang-Mills or gravitational instantons. We show that spherically symmetric power-like Euclidean solutions do not exist in precisely four spacetime dimensions. The explanation for why this is the case turns out to involve the Eguchi-Hanson instanton, whose single copy structure is found to be more complicated (and interesting) than previously thought. We provide a more general prescription for double- copying instantons, and explain how our results provide a higher-dimensional complement to a recently presented non-perturbative double copy of exact solutions in two spacetime dimensions. In doing so, we demonstrate how the replacement of colour by kinematic Lie algebras operates at the level of exact classical solutions.
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[1]  
Bern Z(2010)4 Phys. Rev. Lett. 105 1-undefined
[2]  
Carrasco JJM(1986)undefined Nucl. Phys. B 269 007-undefined
[3]  
Johansson H(2011)undefined JHEP 07 104-undefined
[4]  
Kawai H(2017)undefined JHEP 01 002-undefined
[5]  
Lewellen DC(2017)undefined JHEP 09 111-undefined
[6]  
Tye SHH(2013)undefined JHEP 07 093-undefined
[7]  
Monteiro R(2020)undefined JHEP 07 2100075-undefined
[8]  
O’Connell D(2021)undefined Phys. Rev. Lett. 126 083-undefined
[9]  
Cheung C(2021)undefined Fortsch. Phys. 69 056-undefined
[10]  
Remmen GN(2022)undefined JHEP 02 284-undefined