We provide a first principles derivation of the microscopic entropy of a very general class of supersymmetric, rotating, and accelerating black holes in AdS4. 4 . This is achieved by analyzing the large-N N 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.

Colombo, E., Hosseini, S., Martelli, D., Pittelli, A., Zaffaroni, A. (2024). Microstates of Accelerating and Supersymmetric AdS4 Black Holes from the Spindle Index. PHYSICAL REVIEW LETTERS, 133(3) [10.1103/PhysRevLett.133.031603].

Microstates of Accelerating and Supersymmetric AdS4 Black Holes from the Spindle Index

Colombo E.;Hosseini S. M.;Zaffaroni A.
2024

Abstract

We provide a first principles derivation of the microscopic entropy of a very general class of supersymmetric, rotating, and accelerating black holes in AdS4. 4 . This is achieved by analyzing the large-N N 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.
Articolo in rivista - Articolo scientifico
black holes microstates; AdS/cft
English
2024
133
3
031603
open
Colombo, E., Hosseini, S., Martelli, D., Pittelli, A., Zaffaroni, A. (2024). Microstates of Accelerating and Supersymmetric AdS4 Black Holes from the Spindle Index. PHYSICAL REVIEW LETTERS, 133(3) [10.1103/PhysRevLett.133.031603].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/511039
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