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January 1, 2017Annals of Mathematical Sciences and Applications128 citationsOpen Access

Higher-dimensional supertranslations and Weinberg’s soft graviton theorem

DKDaniel KapecVLVyacheslav LysovSPSabrina Pasterski

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Abstract

Asymptotic symmetries of theories with gravity in d=2m+2 spacetime dimensions are reconsidered for m>1 in light of recent results concerning d=4 BMS symmetries. Weinberg’s soft graviton theorem in 2m+2 dimensions is re-expressed as a Ward identity for the gravitational S-matrix. The corresponding asymptotic symmetries are identified with 2m+2-dimensional supertranslations. An alternate derivation of these asymptotic symmetries as diffeomorphisms which preserve finite-energy boundary conditions at null infinity and act non-trivially on physical data is given. Our results differ from those of previous analyses whose stronger boundary conditions precluded supertranslations for d>4. We find for all even d that supertranslation symmetry is spontaneously broken in the conventional vacuum and identify soft gravitons as the corresponding Goldstone bosons.

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Kapec et al. (2017) studied this question.

synapsesocial.com/papers/69d98db30d540cafc58361fehttps://doi.org/10.4310/amsa.2017.v2.n1.a2
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