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The (2 + 1)-dimensional black hole

Classical and Quantum Gravity · 1995 · Vol. 12(12) · pp. 2853–2879
S Carlip

Abstract

I review the classical and quantum properties of the (2+1)-dimensional black hole of Ba{\~n}ados, Teitelboim, and Zanelli. This solution of the Einstein field equations in three spacetime dimensions shares many of the characteristics of the Kerr black hole: it has an event horizon, an inner horizon, and an ergosphere; it occurs as an endpoint of gravitational collapse; it exhibits mass inflation; and it has a nonvanishing Hawking temperature and interesting thermodynamic properties. At the same time, its structure is simple enough to allow a number of exact computations, particularly in the quantum realm, that are impractical in 3+1 dimensions.

Black Holes and Theoretical PhysicsAstrophysical Phenomena and ObservationsNoncommutative and Quantum Gravity TheoriesBlack hole (networking)White holeRotating black holeSpacetimeHawking radiationExtremal black holeBlack hole thermodynamicsEvent horizonVirtual black holeGravitation
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