Bound states of spinning black holes in five dimensions
arXiv:1603.09729 · doi:10.1007/JHEP05(2017)101
Abstract
We find and study supergravity BPS bound states of five-dimensional spinning black holes in asymptotically flat spacetime. These solutions follow from multi-string solutions in six-dimensional minimal supergravity and can be uplifted to F-theory or M-theory. We analyze the regularity conditions and work out the example of a bound state of two black holes in detail. The bound state is supported by fluxes through nontrivial topologies exterior to the horizons and KK momentum. Furthermore, we determine the entropy and compare with other macroscopic BPS solutions.
31 pages, 4 figures; typos corrected, minor changes in section 2.1
References in corpus (5)
Cited by in corpus (7)
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- A systematic construction of microstate geometries with low angular momentum
- Moduli space of supersymmetric solitons and black holes in five dimensions
- Comments on Black Holes in Bubbling Spacetimes
- BPS Solutions of Six-Dimensional (1,0) Supergravity Coupled to Tensor Multiplets
- Supersymmetric black hole non-uniqueness in five dimensions
- Stationary Black Holes in Supergravity: The Issue of Real Nilpotent Orbits