期刊论文详细信息
Journal of High Energy Physics
General null asymptotics and superrotation-compatible configuration spaces in d ≥ 4
F. Capone1 
[1] Mathematical Sciences and STAG Research Centre, University of Southampton, Highfield, SO17 1BJ, Southampton, U.K.;
关键词: Space-Time Symmetries;    Classical Theories of Gravity;    Gauge-gravity correspondence;    Models of Quantum Gravity;   
DOI  :  10.1007/JHEP10(2021)158
来源: Springer
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【 摘 要 】

We address the problem of consistent Campiglia-Laddha superrotations in d > 4 by solving Bondi-Sachs gauge vacuum Einstein equations at the non-linear level with the most general boundary conditions preserving the null nature of infinity. We discuss how to generalise the boundary structure to make the configuration space compatible with supertanslation-like and superrotation-like transformations. One possibility requires the time-independent boundary metric on the cuts ofto be non-Einstein, while the other sticks to Einstein but time-dependent metrics. Both are novel features with respect to the four dimensional case, where time-dependence of the two-dimensional cross-sectional metric is not required and the Einstein condition is trivially satisfied. Other cases are also discussed. These conditions imply that the configuration spaces are not asymptotically flat in the standard sense. We discuss the implications on the construction of the phase space and the relationship with soft scattering theorems. We show that in even spacetime dimensions, the initial data compatible with such asymptotic symmetries produce maximally polyhomogeneous expansions of the metric and we advance a potential interpretation of this structure in terms of AdS/CFT and realizations of Ricci-flat holography.

【 授权许可】

CC BY   

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