We construct supersymmetric black holes with rotation or NUT charge for the ℂPn — and the t 3 model of N = 2, D = 4 U(1) FI-gauged supergravity. The solutions preserve 2 real supercharges, which are doubled for their near-horizon geometry. For the ℂPn model we also present a generalization to the nonextremal case, which turns out to be characterized by a Carter-Plebański-type metric, and has n + 3 independent parameters, corresponding to mass, angular momentum as well as n + 1 magnetic charges. We discuss the thermodynamics of these solutions, obtain a Christodoulou-Ruffini mass formula, and shew that they obey a first law of thermodynamics and that the product of horizon areas depends on the angular momentum and the magnetic charges only. At least some of the BPS black holes that we obtain may become instrumental for future microscopic entropy computations involving a supersymmetric index.

Rotating black holes in the FI-gauged N = 2, D = 4 ℂPn model

Faedo F.
;
Klemm D.
;
2019-01-01

Abstract

We construct supersymmetric black holes with rotation or NUT charge for the ℂPn — and the t 3 model of N = 2, D = 4 U(1) FI-gauged supergravity. The solutions preserve 2 real supercharges, which are doubled for their near-horizon geometry. For the ℂPn model we also present a generalization to the nonextremal case, which turns out to be characterized by a Carter-Plebański-type metric, and has n + 3 independent parameters, corresponding to mass, angular momentum as well as n + 1 magnetic charges. We discuss the thermodynamics of these solutions, obtain a Christodoulou-Ruffini mass formula, and shew that they obey a first law of thermodynamics and that the product of horizon areas depends on the angular momentum and the magnetic charges only. At least some of the BPS black holes that we obtain may become instrumental for future microscopic entropy computations involving a supersymmetric index.
2019
2019
3
1
30
https://link.springer.com/article/10.1007/JHEP03(2019)151
http://arxiv.org/abs/1902.03113v2
AdS-CFT Correspondence; Black Holes; Classical Theories of Gravity; Supergravity Models; High Energy Physics - Theory; High Energy Physics - Theory; General Relativity and Quantum Cosmology
Daniele N.; Faedo F.; Klemm D.; Ramirez P.F.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/1788041
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