Publication | Open Access
Three-dimensional SCFT on conic space as hologram of charged topological black hole
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Citations
47
References
2014
Year
Free EnergyBlack Hole DynamicEngineeringConic SpacePhysicsBlack HoleQuantum Field TheoryTopological Black HolesHolographic MethodThree-dimensional ScftSupersymmetry Localization TechniqueGauge TheoryConformal Field TheoryDigital Holography
We construct three-dimensional $ \mathcal{N} $ = 2 supersymmetric field theories on conic spaces. Built upon the fact that the partition function depends solely on the Reeb vector of the Killing vector, we propose that holographic dual of these theories are four-dimensional, supersymmetric charged topological black holes. With the supersymmetry localization technique, we study conserved supercharges, free energy, and supersymmetric Rényi entropy. At planar large N limit, we demonstrate perfect agreement between the superconformal field theories and the supersymmetric charged topological black holes.
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