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Institute of Theoretical Physics · Faculty of Mathematics and Physics, Charles University

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Article

Rotating and accelerating AdS black holes in Einstein-Gauss-Bonnet gravity

Anabalon, A.; Astefanesei, D.; Cisterna, A.; Izaurieta, F.; Oliva, J.; Quijada, C.; Quinzacara, C.

857, 5 (2024)

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Abstract

We present new, exact, rotating and accelerating solutions within the framework of five-dimensional Einstein- Gauss-Bonnet theory at the Chern-Simons point. The rotating solutions describe black holes characterized by a single rotation parameter, a mass parameter, and two extra integration constants that can be interpreted as hairs of a gravitational nature. It is noteworthy that the rotation cannot be removed by a large diffeomorphism. We also extend our procedure to dimension seven, providing a new rotating solution with two rotation parameters pertaining to cubic Lovelock theory with a unique vacuum.

Institute authors

Supported by

  • GACR 22-14791S — Černoděrové prostoročasy v obecné dimenzi, jejich vlastnosti a interpretace
  • PRIMUS/23/SCI/005 — Prostoročasy a pole v teoriích s derivacemi vyššího řádu

BibTeX

@article{UTF966,
  author        = {Anabalon, A. and Astefanesei, D. and Cisterna, A. and Izaurieta, F. and Oliva, J. and Quijada, C. and Quinzacara, C.},
  title         = {{Rotating and accelerating AdS black holes in Einstein-Gauss-Bonnet gravity}},
  volume        = {857},
  pages         = {5},
  year          = {2024},
  month         = {10},
  doi           = {10.1016/j.physletb.2024.139000},
  url           = {https://doi.org/10.1016/j.physletb.2024.139000},
}