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

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Article

Electromagnetized black holes and swirling backgrounds in nonlinear electrodynamics: The ModMax case

Barrientos, J.; Cisterna, A.; Hassaine, M.; Pallikaris, K.

Phys. Lett. B 860, 139214 (2025)

doi ↗ arXiv:2409.12336 ↗ link ↗

Abstract

This work focuses on constructing electromagnetized black holes and vortex-like backgrounds within the framework of the ModMax theory-the unique nonlinear extension of Maxwell's theory that preserves conformal symmetry and electromagnetic duality invariance. We begin by constructing the Melvin-Bonnor electromagnetic universe in ModMax through a limiting procedure that connects the spacetime of two charged accelerating black holes with that of a gravitating homogeneous electromagnetic field. Building on this result, we proceed to construct the Schwarzschild and C-metric Melvin-Bonnor black holes within the ModMax theory, representing the first black hole solutions embedded in an electromagnetic universe in the context of nonlinear electrodynamics. While the characteristics of the Melvin-Bonnor spacetime and some of its black hole extensions have been widely examined, we demonstrate for the first time that the Schwarzschild-Melvin-Bonnor configuration exhibits an unusual Kerr-Schild representation. Following this direction, we also unveil a novel Kerr-Schild construction for the spacetime of two accelerating black holes, drawing on the intrinsic relationship between the Melvin-Bonnor spacetime and the C-metric. Finally, we expand the spectrum of exact gravitational solutions within EinsteinModMax theory by constructing a vortex-like background that coexists with the Melvin-Bonnor universe. In this process, the Taub-NUT spacetime in ModMax has played a crucial role. We present this Taub-NUT solution in a different gauge that facilitates the comparison with the Melvin-Bonnor-Swirling case.

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{UTF1047,
  author        = {Barrientos, J. and Cisterna, A. and Hassaine, M. and Pallikaris, K.},
  title         = {{Electromagnetized black holes and swirling backgrounds in nonlinear electrodynamics: The ModMax case}},
  journal       = {Phys. Lett. B},
  volume        = {860},
  pages         = {139214},
  year          = {2025},
  month         = {1},
  doi           = {10.1016/j.physletb.2024.139214},
  eprint        = {2409.12336},
  archivePrefix = {arXiv},
  url           = {https://doi.org/10.1016/j.physletb.2024.139214},
}