4.4 Article

Large diffeomorphisms and accidental symmetry of the extremal horizon

期刊

JOURNAL OF HIGH ENERGY PHYSICS
卷 -, 期 3, 页码 -

出版社

SPRINGER
DOI: 10.1007/JHEP03(2022)107

关键词

Black Holes; Space-Time Symmetries

资金

  1. Black Hole Initiative at Harvard University - John Templeton Foundation
  2. Gordon and Betty Moore Foundation
  3. Kavli Institute for Theoretical Physics by the Simons Foundation [216179]
  4. National Science Foundation [NSF PHY-1748958]
  5. University of California, Santa Barbara by the Fundamental Physics Fellowship

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This study uncovers the symmetry of the linear Einstein equations near extremal horizons. It shows that under certain transformations, the equations of motion remain satisfied for perturbative solutions to the Einstein-Maxwell equations.
We uncover a symmetry of the linear Einstein equations near extremal horizons. Specifically, acting with a spherically symmetric linearized diffeomorphism on the perturbative solutions to the Einstein-Maxwell equations in the Bertotti-Robinson background, but not acting on the background itself, we find that there is a subset of such transformations under which the equations of motion remain satisfied, with or without additional matter. This represents an accidental symmetry in the sense that the set of transformations realizing the mapping among solutions is strictly larger than the SL(2) isometries of the background spacetime. We argue that our accidental symmetry can be thought of as an on-shell large diffeomorphism of AdS(2), which we support in the context of Jackiw-Teitelboim theory.

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