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Extended BMS Algebra of Celestial CFT

MPS-Authors

Fotopoulos,  Angelos
Max Planck Institute for Physics, Max Planck Society and Cooperation Partners;

Stieberger,  Stephan
Max Planck Institute for Physics, Max Planck Society and Cooperation Partners;

Taylor,  Tomasz R.
Max Planck Institute for Physics, Max Planck Society and Cooperation Partners;

Zhu,  Bin
Max Planck Institute for Physics, Max Planck Society and Cooperation Partners;

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Citation

Fotopoulos, A., Stieberger, S., Taylor, T. R., & Zhu, B. (2020). Extended BMS Algebra of Celestial CFT. Journal of High Energy Physics, 2003, 130. Retrieved from https://publications.mppmu.mpg.de/?action=search&mpi=MPP-2019-264.


Cite as: https://hdl.handle.net/21.11116/0000-0008-1C07-2
Abstract
We elaborate on the proposal of flat holography in which four-dimensional physics is encoded in two-dimensional celestial conformal field theory (CCFT). The symmetry underlying CCFT is the extended BMS symmetry of (asymptotically) flat spacetime. We use soft and collinear theorems of Einstein-Yang-Mills theory to derive the OPEs of BMS field operators generating superrotations and supertranslations. The energy-momentum tensor, given by a shadow transform of a soft graviton operator, implements superrotations in the Virasoro subalgebra of $\mathfrak{bms_4}$. Supertranslations can be obtained from a single translation generator along the light-cone direction by commuting it with the energy-momentum tensor. This operator also originates from a soft graviton and generates a flow of conformal dimensions. All supertranslations can be assembled into a single primary conformal field operator on celestial sphere.