Microstates of accelerating and supersymmetric AdS black holes from the spindle index
arXiv:2404.07173 · doi:10.1103/PhysRevLett.133.031603
Abstract
We provide a first principles derivation of the microscopic entropy of a very general class of supersymmetric, rotating and accelerating black holes in AdS. This is achieved by analysing the large- limit of the spindle index and completes the construction of the first example of a holographic duality involving supersymmetric field theories defined on orbifolds with conical singularities.
6 pages, v2: references added
References in corpus (10)
- Sasaki-Einstein Manifolds and Volume Minimisation
- Accelerating Black Holes and Spinning Spindles
- Thermodynamics of accelerating and supersymmetric black holes
- Supersymmetric spindles
- Multi-charge accelerating black holes and spinning spindles
- D4-branes wrapped on a spindle
- Entropy functions for accelerating black holes
- The Spindle Index from Localization
- Localization and Attraction
- The large- limit of 4d superconformal indices for general BPS charges
Cited by in corpus (10)
- Localization of the free energy in supergravity
- Toric gravitational instantons in gauged supergravity
- Super Yang-Mills on Branched Covers and Weighted Projective Spaces
- Holographic Generalised Gukov-Witten Defects
- NUTs, Bolts, and Spindles
- Exact Results for SYM on and with Conical Singularities
- Constant maps in equivariant topological strings and geometric modeling of fluxes
- -extremization with baryonic charges
- Holography and the Hilbert Scheme
- Supersymmetric localisation of theories on a spindle