4.4 Article

Four dimensional black hole microstates: from D-branes to spacetime foam

期刊

JOURNAL OF HIGH ENERGY PHYSICS
卷 -, 期 1, 页码 -

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SPRINGER
DOI: 10.1088/1126-6708/2008/01/056

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d-branes; black holes in string theory; black holes

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We propose that every supersymmetric four dimensional black hole of finite area can be split up into microstates made up of primitive half-BPS atoms. The mutual non-locality of the charges of these atoms binds the state together. In support of this proposal, we display a class of smooth, horizon-free, four dimensional supergravity solutions carrying the charges of black holes, with multiple centers each carrying the charge of a half-BPS state. At vanishing string coupling the solutions collapse to a bound system of intersecting D-branes. At weak coupling the system expands into the non-compact directions forming a topologically complex geometry. At strong coupling, a new dimension opens up, and the solutions form a foam of spheres threaded by flux in M-theory. We propose that this transverse growth of the underlying bound state of constitutent branes is responsible for the emergence of black hole horizons for coarse-grained observables. As such, it suggests the link between the D-brane and spacetime foam approaches to black hole entropy.

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