Holographic description of non-supersymmetric orbifolded D1-D5-P solutions
arXiv:1508.01231 · doi:10.1007/JHEP11(2015)063
Abstract
Non-supersymmetric black hole microstates are of great interest in the context of the black hole information paradox. We identify the holographic description of the general class of non-supersymmetric orbifolded D1-D5-P supergravity solutions found by Jejjala, Madden, Ross and Titchener. This class includes both completely smooth solutions and solutions with conical defects, and in the near-decoupling limit these solutions describe degrees of freedom in the cap region. The CFT description involves a general class of states obtained by fractional spectral flow in both left-moving and right-moving sectors, generalizing previous work which studied special cases in this class. We compute the massless scalar emission spectrum and emission rates in both gravity and CFT and find perfect agreement, thereby providing strong evidence for our proposed identification. We also investigate the physics of ergoregion emission as pair creation for these orbifolded solutions. Our results represent the largest class of non-supersymmetric black hole microstate geometries with identified CFT duals presently known.
35 pages, v2: comments added, typos corrected, reference added
References in corpus (21)
- The fuzzball proposal for black holes
- Habemus Superstratum! A constructive proof of the existence of superstrata
- Black Holes as Effective Geometries
- Mergers and Typical Black Hole Microstates
- Radiation from the non-extremal fuzzball
- Fuzzball solutions for black holes and D1-brane--D5-brane microstates
- D1-D5-P microstates at the cap
- Non-supersymmetric microstates of the D1-D5-KK system
- Emission from the D1D5 CFT
- Effect of the deformation operator in the D1D5 CFT
- Pair creation in non-extremal fuzzball geometries
- Effect of the twist operator in the D1D5 CFT
- Structure of Six-Dimensional Microstate Geometries
- Momentum-carrying waves on D1-D5 microstate geometries
- Floating JMaRT
- Spectral Flow of the Non-Supersymmetric Microstates of the D1-D5-KK System
- Non-supersymmetric Microstates of the MSW System
- A bubbling bolt
- Geometry of non-supersymmetric three-charge bound states
- An Inverse Scattering Construction of the JMaRT Fuzzball
- A model with no firewall
Cited by in corpus (39)
- Momentum Fractionation on Superstrata
- Instability of supersymmetric microstate geometries
- Integrability and Black-Hole Microstate Geometries
- Fuzzballs and Observations
- Correlators at large c without information loss
- String Theory of Supertubes
- Little Strings, Long Strings, and Fuzzballs
- String dynamics in NS5-F1-P geometries
- Stringy Structure at the BPS Bound
- Non-BPS multi-bubble microstate geometries
- Supercharged AdS Holography
- The Great Escape: Tunneling out of Microstate Geometries
- Bolting Multicenter Solutions
- Non-BPS Floating Branes and Bubbling Geometries
- Hair-brane Ideas on the Horizon
- Black hole microstates from the worldsheet
- On the BPS sector in AdS_3/CFT_2 Holography
- Worldsheet Correlators in Black Hole Microstates
- Non-BPS Bubbling Geometries in AdS
- The fuzzball nature of two-charge black hole microstates
- Accelerating strangelets via Penrose process in non-BPS fuzzballs
- Quasinormal modes of supersymmetric microstate geometries from the D1-D5 CFT
- Worldsheet computation of heavy-light correlators
- Shockwaves in black hole microstate geometries
- The large limit of OPEs in symmetric orbifold CFTs with supersymmetry
- States, symmetries and correlators of and symmetric orbifolds
- Non-extremal superdescendants of the D1D5 CFT
- Bubbling the NHEK
- Gravitational Waves, Holography, and Black Hole Microstates
- A Generalised Garfinkle-Vachaspati Transform
- Hair on non-extremal D1-D5 bound states
- More on the SW-QNM correspondence
- Superstrata on Orbifolded Backgrounds
- Instabilities of microstate geometries with antibranes
- Probing Black Hole Microstate Evolution with Networks and Random Walks
- Generalized Hot Attractors
- Hidden symmetries of black holes in five-dimensional supergravity
- The Hot Attractor Mechanism: Decoupling Without Deep Throats
- Evolutionary algorithms for multi-center solutions