Revisiting black holes of algebraic type D with a cosmological constant
arXiv:2501.07537 · doi:10.1103/PhysRevD.111.084016
Abstract
As an extension of our previous work [1] (arXiv:2409.02308), we study a complete family of type D black holes with Kerr-like rotation, NUT twist, acceleration, electric and magnetic charges, and any value of the cosmological constant . We relate various metric forms of these spacetimes, namely those found by Plebanski-Demianski (PD), Griffiths-Podolsky (GP), and most recently Astorino (A). By explicit coordinate transformations and proper identification of the physical parameters we show that these representations are locally equivalent, and cover the entire class of type D solutions of the Einstein-Maxwell- equations, such that the (non-null) electromagnetic field is aligned with both the (double-degenerate) principal null directions of the Weyl tensor. In particular, we concentrate on the subclass which describes accelerating NUT black holes without the Kerr-like rotation.
39 pages, no figure, 2 tables
References in corpus (9)
- Accelerating Kerr-Newman black holes in (anti-)de Sitter space-time
- Accelerating Taub-NUT and Eguchi-Hanson solitons in four dimensions
- New form of all black holes of type D with a cosmological constant
- Plebanski-Demianski goes NUTs (to remove the Misner string)
- Accelerating and Charged Type I Black Holes
- Equivalence principle and generalised accelerating black holes from binary systems
- Black holes of type D revisited: relating their various metric forms
- Most general Type-D Black Hole and the Accelerating Reissner-Nordstrom-NUT-(A)dS solution
- Is the type-D NUT C-metric really "missing" from the most general Plebański-Demiański solution?
Cited by in corpus (7)
- Kerr black hole in a uniform Bertotti-Robinson magnetic field: An exact solution
- New class of rotating charged black holes with nonaligned electromagnetic field
- Kerr-Newman black hole in a Melvin-swirling universe
- Black holes in the external Bertotti-Robinson-Bonnor-Melvin electromagnetic field
- Conserved quantities and integrability for massless spinning particles in general relativity
- Anisotropic matter and nonlinear electromagnetics black holes
- Various metric forms of all type D black holes and their application