Extremal Myers-Perry black holes in Born-Infeld-dilaton theory
arXiv:1404.0949 · doi:10.1103/PhysRevD.89.084049
Abstract
A class of perturbative charged rotating dilaton black hole solutions coupled to the nonlinear Born-Infeld electrodynamics is presented. The strategy for obtaining these solutions is to start from Myers-Perry solutions, and then considering the effects of the dilaton field, Born-Infeld parameter as well as the electric charge as a perturbative parameter. We perform the perturbations up to 4th order in the extremal black holes of Einstein-Born-Infeld-dilaton gravity with equal angular momentum and arbitrary dilaton coupling constant. We discuss the physical properties of these black holes and study their dependence on the perturbative parameter , the dilaton coupling constant and the Born-Infeld parameter . One can see these black holes solutions satisfy a generalized Smarr relation.
12 pages, 4 figures, the version to appear in Phys. Rev. D. arXiv admin note: text overlap with arXiv:1007.4250 by other authors
References in corpus (12)
- Asymptotic Reissner-Nordstrom black holes
- Thermodynamics of higher dimensional topological charged AdS black branes in dilaton gravity
- Thermodynamics of Rotating Black Branes in Gauss-Bonnet-Born-Infeld Gravity
- Topological Born-Infeld-dilaton black holes
- Charged Rotating Black Holes in Odd Dimensions
- Thermodynamics of black holes in -dimensional Einstein-Born-Infeld dilaton gravity
- Rotating Black String with Nonlinear Source
- Rotating Black Branes in Brans-Dicke-Born-Infeld Theory
- Thermodynamics of rotating solutions in (n+1)-dimensional Einstein-Maxwell-dilaton gravity
- Magnetic Branes in -dimensional Einstein-Maxwell-dilaton gravity
- Charged rotating dilaton black strings in AdS spaces
- Magnetic dilaton strings in anti-de Sitter spaces