Smooth non-extremal D1-D5-P solutions as charged gravitational instantons
arXiv:1603.06799 · doi:10.1007/JHEP08(2016)027
Abstract
We present an alternative and more direct construction of the non-supersymmetric D1-D5-P supergravity solutions found by Jejjala, Madden, Ross and Titchener. We show that these solutions --- with all three charges and both rotations turned on --- can be viewed as a charged version of the Myers-Perry instanton. We present an inverse scattering construction of the Myers-Perry instanton metric in Euclidean five-dimensional gravity. The angular momentum bounds in this construction turn out to be precisely the ones necessary for the smooth microstate geometries. We add charges on the Myers-Perry instanton using appropriate SO(4,4) hidden symmetry transformations. The full construction can be viewed as an extension and simplification of a previous work by Katsimpouri, Kleinschmidt and Virmani.
24 pages; 3 figures
References in corpus (12)
- Uniqueness theorem for 5-dimensional black holes with two axial Killing fields
- Orthogonal black di-ring solution
- Non-supersymmetric microstates of the D1-D5-KK system
- Subtracted Geometry From Harrison Transformations
- Non-BPS multi-bubble microstate geometries
- Floating JMaRT
- Non-supersymmetric Microstates of the MSW System
- Spectral Flow of the Non-Supersymmetric Microstates of the D1-D5-KK System
- A bubbling bolt
- Geometry of non-supersymmetric three-charge bound states
- An Inverse Scattering Construction of the JMaRT Fuzzball
- Geroch Group Description of Black Holes
Cited by in corpus (6)
- Accelerating strangelets via Penrose process in non-BPS fuzzballs
- Quasinormal modes of supersymmetric microstate geometries from the D1-D5 CFT
- Exact helicoidal and catenoidal solutions in Einstein-Maxwell theory
- Hair on non-extremal D1-D5 bound states
- Geroch Group Description of Bubbling Geometries
- NUT Solutions in Einstein-Maxwell-scalar-Gauss-Bonnet Gravity