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New class of rotating charged black holes with nonaligned electromagnetic field

Ovcharenko H.; Podolský J.

We present a large family of twisting and expanding solutions to the Einstein-Maxwell equations of algebraic type D, for which the two double principal null directions (PNDs) of the Weyl tensor are not aligned with the null eigendirections of the Faraday tensor. In addition to systematically deriving this new class, we present its various metric forms and convenient parametrizations. We show that in BoyerLindquist-type coordinates these solutions depend on seven parameters, namely the Kerr and NUT (Newman-Unti-Tamburino) twist parameters a and l, mass parameter m, acceleration alpha, strength of the Maxwell field c , and angular parameters beta, gamma that represent two duality rotations of the Faraday tensor, which include the rotation between the electric and magnetic charges generating the aligned part of the Maxwell field. This coordinate parametrization, analogous to the Griffiths-Podolsk & yacute; form of the Pleba & nacute;skiDemia & nacute;ski solutions, allows us to perform various limits, explicitly identify the subcases, and determine the physical interpretation of the new class. Interestingly, by considering the limit with no acceleration (alpha -* 0), one obtains either the famous Kerr-Newman-NUT black holes (if the parameter c remains constant) or the novel Kerr-Bertotti-Robinson black holes, announced recently in our work [Kerr black hole in a uniform Bertotti-Robinson magnetic field: An exact solution, Phys. Rev. Lett. (to be published), 10.1103/rfgvybz5.] (if c -* infinity while alpha c = const:). We may thus conclude that this new class of spacetimes represents twisting charged accelerating black holes, immersed in an external magnetic (or electric) field. In the nontwisting subcase, we obtain the previously known solution of Van den Bergh-Carminati.
type:article
journal:Phys. Rev. D
volume:112
nr:6
pages:064076
year:2025
link: https://doi.org/10.1103/8wkz-th6v
grants:Pokročilé techniky aplikované na přesné prostoročasy s černými dírami a gravitačními vlnami; 2023 - 2025; hlavní řešitel: J. Podolský
Gravitace ve čtyřech i jiných dimenzích: Exaktní řešení a jejich fyzikální aspekty; ;
Aktuální problémy teoretické fyziky; 2025; hlavní řešitel: O. Semerák, univerzitní projekt SVV pro podporu vědecké práce studentů
files:
physrevd.112.064076_ovcharenko.podolsky.pdf (2541.61 kB)

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