Dyonic Born-Infeld black hole in four-dimensional Horndeski gravity
arXiv:2102.05112 · doi:10.1016/j.physletb.2021.136420
Abstract
The action of four-dimensional Horndeski gravity coupled to Born-Infeld electromagnetic fields is given via the Kaluza-Klein process. Dyonic black hole solution of the theory is constructed. The metric is devoid of singularity at the origin independent of the parameter selections, this property is different from the one of Einstein-Born-Infeld black holes. Thermodynamics of the black hole is studied, thermodynamic quantities are calculated and the first law is checked to be satisfied. Thermodynamic phase transitions of the black holes are studied in extended phase space.
13 pages, 2 figures. Phys.Lett.B 819 (2021) 136420
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- The 4D Einstein-Gauss-Bonnet Theory of Gravity: A Review
- Black Holes in the Scalar-Tensor Formulation of 4D Einstein-Gauss-Bonnet Gravity: Uniqueness of Solutions, and a New Candidate for Dark Matter
- Non-linear charged planar black holes in four-dimensional Scalar-Gauss-Bonnet theories
- Thermodynamics of a static electric-magnetic black hole in Einstein-Born-Infeld-AdS theory with different horizon geometries
- Magnetic black holes within Einstein-AdS gravity coupled to nonlinear electrodynamics, extended phase space thermodynamics and Joule-Thomson expansion