Dilaton gravity, charged dust, and (quasi-) black holes
arXiv:1405.6116 · doi:10.1103/PhysRevD.89.107501
Abstract
We consider Einstein-Maxwell-dilaton gravity with charged dust and interaction of the form , where is an arbitrary function of the dilaton field that can be normal or phantom. For any regular , static configurations are possible with arbitrary functions () and , without any assumption of spatial symmetry. The classical Majumdar-Papapetrou system is restored by putting const. Among possible solutions are black-hole (BH) and quasi-black-hole (QBH) ones. Some general results on BH and QBH properties are deduced and confirmed by examples. It is found, in particular, that asymptotically flat BHs and QBHs can exist with positive energy densities of matter and both scalar and electromagnetic fields.
revtex4, 4 pages, 1 figure of 3 parts. A brief presentation of main results (not all) of arXiv:1312.4891
References in corpus (4)
Cited by in corpus (6)
- Cylindrical Systems in General Relativity
- Thermodynamics and Optical Properties of Phantom AdS Black Holes in Massive Gravity
- Topological Mod(A)Max AdS black holes
- Dilaton gravity, (quasi-) black holes, and scalar charge
- Quasi-black holes: general features and purely field configurations
- Thermodynamics, Phase Transitions, and Geodesic Structure of F(R)-Phantom Banados-Teitelboim-Zanelli (BTZ) Black Holes